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APPENDIX C TEST DATA - FOAM ON TOP OF JP-5 AR 25C C-l US00003151 Fig. C I- Mass data irt tests with foam on JP-5 at 20C. Test conditions: expansin ratio= 3.3, irradiance= 0kW/m2, initial foam height= 28mm. fm10180.dat IEG-J 10 200 400 600 800 1000 1200 1400 Time [sec] Fig. C2- Foam tempentture in tests with foam on JP-5 at 20C. Test conditions: expansin ratio= 3.3, irradiance= 0kW/m2, initial foam height= 28mm. 1600 C-2 US00003152 fm10180.dat Fig. C3- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 28mm. fm10180.dat Fig. C4- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--3.3, irradiance= 0kW/m2, initial foam height= 28mm. C-3 US00003153 fm10180.dat Fig. C5- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 3.3, irradiance= 0kW/m2, initial foam heigbt= 28mm. fm10180.dat Time [sec] Fig. C6- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height^ 28mm. C-4 US00003154 2B.0000001 fm10180.dat 27.9999999 E 27.9999998 E 27.9999997 27.9999996 27.9999905 27.9999994 200 400 600 800 1000 1200 1400 1600 Time [sec] Fig. C l- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 28mm. fm10180.dat 0 .0 0 0 0 0 1 2 0.000001 0.0000008 E DC 0.0000006 co O 0.0000004 0,0000002 - 0.0000002 200 400 600 600 1000 1200 1400 1600 Time [sec] Fig. C8- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 28mm. C-5 US00003155 Fig. C9- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 68mm. fm10181.dat 25 -------------------------- X Fue! O 0 mm 25 mm + 50 mm * 100 mm 5 -- 0 -t-- - - 0 too - - 200 , 300 ............................ ......................................... ................................................................................................................................... 400 500 600 700 800 900 1000 Time [sec] Fig. Cl 0- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3,3, irradiance= 0kW/m2, initial foam height= 68mm. C-6 US00003156 fm10181.dat Fig. C ll- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--3.3, irradiance= 0kW/m2, initial foam height^ 68mm fm10181.dat Fig. Cl 2- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--3.3, irradiance= 0kW/m2, initial foam height-- 68mm. C-7 US00003157 Drain Rate per Unit Area [kg/(s m2)] - 'T0 fm10181.dat Cl 3- Drain rate "versus Foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= irradiance= 0kW/m2, initial foam height - 68mm. fm10181.dat Time [sec] Fig. C14- Effective heat o f vaporization in tests with foam on JP-5 at 20C, Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 68mm. C-8 US00003158 Heat of Gasification [kJ/g] 68.0000025 fm10181.dat 68.000002 68.0000015 o 68.000001 X Ero uo. 68.0000005 68 67,9999995 100 200 300 400 500 600 700 800 900 1000 Time [sec) Fig. C 15- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 68mm. fm10181.dat -0.0000005 - 0.000001 a: -0.0000015 co - 0.000002 -0.0000025 E -0.000003 100 200 300 400 500 600 700 800 900 1C30 -0.000004 -0.0000045 Time [sec] Fig. Cl 6- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 68mm. 09 US00003159 Fig. 0 7 - Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ration 3.3, irradiance^ OkW/m2, initial foam height= 93mm. fm10182.dat 10 100 200 400 500 600 700 800 Time [sec] Fig. Cl 8- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initia! foam height= 93mm. 900 I C-10 US00003160 fm10182.dat 0 100 200 300 400 500 600 700 BOO 900 Time [sec] Fig. C l9- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 93mm. fm10182.dat Fig. C20- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height- 93mm. C -ll US00003161 fm10182.dat Fig. C 2I- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance=0kW/m2, initia! foam height= 93mm. fm10182.dat Time Isec] Fig. C22- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 93mm. C-12 US00003162 fm10182.dat Time [sec] Fig. C23- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ration 3.3, irradiance= 0kW/m2, initial foam height= 93mm. fm10182.dat Time [sec] Fig. C24- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.3, irradiance= 0kW/m2, initial foam height= 93mm. C-13 US00003163 Fig. C25- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.08, irradianee= 20kW/m2, initial foam height= 25mm. Fig. C26- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.08, irradiance= 20kW/m2, initial foam height= 25mm. C-14 US00003164 fm10300.dat Fig. C27- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.08, irradiance= 20kW/m2, initial foam height= 25mm. fm10300.dat Fig, C28- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 5.08, irradiance= 20kW/m2, initial foam beight= 25mm. C-15 US00003165 fm10300.dat Fig. C29- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.08, irradiance= 20kW/m2, initial foam height^ 25mm. fm10300.dat Fig. C30- Effective heat of vaporization in tests with foam on JP-5 at 20. Test conditions: expansion ratio 5.08, irradiance= 20kW/m2, initial foam height= 25mm. C-16 US00003166 fm10300.dat 30 Fig. C31 - Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.08, irradiance^ 20kW/m2, initial foam height= 25mm. fm10300.dat Fig. C32- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.08, irradiance= 20kW/m2, initial foam height= 25mm. C-17 US00003167 Fig. C33-M ass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 3.98, irradiance20kW/m2, initial foam height= 50mm. Fig. C34- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio 3.98, irradiance= 20kW/m2, initial foam height= 50rmn. C-18 US00003168 fm10301.dat Fig. C35- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.98, irradiance= 20kWi'm2, initial foam height3 50mm, fm10301.dat Fig. C36- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions; expansion ratio--3.98, irradiance= 20kW/m2, initial foam height= 50mm. C-19 US00003169 fm10301 .dat Fig. C37- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.98, irradiance= 20kW/m2, initial foam height= 50mm. fm 10301 dat Fig. C38- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.98, irradiance= 20kW/m2, initial foam beight= 50mm. C-20 US00003170 fm10301.dat Fig. C39- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.98, irradiance= 20kW/m2, initial foam height= 50mm. fm10301.dat Fig. C40- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3,98, irradiance= 20kW/m2, initial foam heighl= 50mm. C-2I US00003171 Fig- C41 - Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio " 2.66, irradiance= 20kW/m2, initial foam height= 75mm. Fig. C42- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.66, irradiance= 20kW/m2, initial foam heigbt= 75mm. C-22 US00003172 fm10302.dat 0 20 40 60 80 100 T20 Time [sec] Fig. C43- Drain rate in tests witb foam on JP-5 at 20C. Test conditions: expansion ratio= 2.66, irradiance= 20kW/m2, initial foam height= 75mm. fm 10302.dat Fig. C44- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--- 2.66, inadiance= 20kW/m2, initial foam height= 75mm. 023 US00003173 fm10302.dat Fig. C45- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.66, irradiance= 20kW/m2, initial foam beight= 75mm. fm10302.dat Fig. C46- Effective heat o f vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio 2.66, irradiance= 20kW/m2, initial foam height= 75mm. C-24 US00003174 fm10302.dat Time [sec] Fig. C47- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.66, irradiance= 20kW/m2, initial foam height= 75mm. fm10302.dat Time tsec] Fig. C48- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.66, irradiance= 20kW/m2, initial foam height= 75mm. C-25 US00003175 Fig. C49- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradiance= 35kW/m2, initial foam height= 25mm. Fig. C50- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradiance= 35kW/m2, initial foam height= 25mm. C-26 US00003176 fm10304.dat Fig. C51- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ration 4.11, irradiance= 35kW/m2, initial foam height= 25mm. fm10304.dat Fig. C52- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradiance^ 35kW/m2, initial foam height= 25mm. C-27 US00003177 fm10304 dat Fig. C53- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradiance= 35kW/m2, initial foam height= 25mm. Fig. C54- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradjance= 35kW/m2, initial foam beight= 25mm. C-28 US00003178 fm10304.dat Fig. C55- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradiance= 35kW/m2, initial foam height= 25mm. fm 10 3 0 4 .d a t Fig. C56- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.11, irradiance=35kW/m2, initial foam height= 25mm. C-29 US00003179 Fig. C57- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.13, irradiance= 35kW/m2, initial foam heigbt= 50mm. Fig. C58- Foam temperature in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 4.13, irradianee= 35kW/m2, initial foam height= 50mm, C-30 US00003180 fm10305.dat Fig. C59- Drain raie in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 4,13, irradiance= 35kW/m2, initial foam height= 50mm. fm1Q305.dat Fig. C60- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--4.13, irradiance=35kW/ni2, initial foam height= 50mm. 031 US00003181 fm10305.dat Fig. C61- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.13, irradiance= 35kW/m2, initial foam height= 50mm. fm10305.dat Fig. C62- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 4.13, irradiance= 35kW/m2, initial foam height= 50mm. C-32 US00003182 fm10305.dat Fig. C63- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.13, irradiance= 35kW/m2, initial foam height= 50mm. fm10305.dat Fig. C64- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.13, irradiance= 35kW/m2, initial foam height= 50mm. C-33 US00003183 Fig. C65- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.68, jrradianee= 35kW/m2, initial foam height= 75mm. Fig. C66- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.68, irradiance= 35kW/m2, initial foam height= 75mm. C-34 US00003184 35kW/m2, initial foam heights 75mm. Fig. C68- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 2.68, irradiance= 35kW/m2, initial foam height= 75mm. C-35 US00003185 fm10306.dat Fig. C69- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.68, irradiance= 35kW/m2, initial foam height= 75mm. Fig. C70- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.68, irradiance= 35kW/m2, initial foam height= 75mm. I C-36 US00003186 fm10306.dat Fig. C71- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.68, irradianee= 35kW/m2, initial foam height= 75mm. fm10306.dat Fig. C72- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 2.68, irradiance= 35kW/m2, initial foam heigbt= 75mm. 037 US00003187 Fig. C73- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.38, irradiance^ 50kW/m2, initial foam height= 25mm. . Fig. C74- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.38, irradiance= 50kW/m2, initial foam height= 25mm. C-38 US00003188 fm11030.dat Fig. C75- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ration 2.38, irradiance50kW/m2, initial foam height= 25mm. fm11030.dat Fig. C76- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.38, irradiance= 50kW/m2, initial foam height= 25mm. jf C-39 US00003189 fm11030.dat Fig. C77- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.38, irradiance= 50kW/m2, initiai foam height^ 25mm. Fig. C78- Effective heat o f vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.38, irradiance= 50kW/m2, initial foam height= 25mm. I C-4G US00003190 fm11030.dat Fig. C79- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--2.38, irradiance= 50kW/m2, initial foam beight= 25mm. fm11030.dat Fig. C80- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 2.38, irradiance= 50kW/m2, initial foam height= 25mm. C-41 US00003191 fm 11031.dat + Mass drained Mass evaporated A Mass in pan Mass Batance Time Isec] Fig. C81- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ration 2.81, irradiance= 50kW/m2, initial foam height= 25mm. Fig. C82- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.81, irradiance= 50kW/m2, initial foam height3 25mm. C-42 US00003192 fm11031.dat Fig. C83- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.81, iriadiance= 50kW/nv2, initial foam height^ 25mm. fm11031.dat Fig. C84- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--2.81, irradiance= 50kW/m2, initial foam heights 25mm. C-43 US00003193 fm 1 1031.dat Fig. C85- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.81, irradiance= 50kW/m2, initia! foam height= 25mm. fm11031.dat Fig. C86- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.81, inadiance= 50kW/m2, initial foam height= 25mm. C-44 US00003194 fm11031.dat Fig. C87- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.81, irradiance= 50kW/m2, initial foam height^ 25mm. fm11031.dat I Fig. CSS- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.81, irradiance= 50kW/m2, initial foam height^ 25mm. C-45 US00003195 Fig. C89- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance= 50kW/m2, initial foam beight= 50mm. Time [sec] Fig. C90- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance= 50kW/m2, initial foam height= 50mm. C-46 US00003196 fm tt032.dat Fig, C91- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance= 50kW/m2, initial foam height= 50mm. fm11032.dat Fig. C92- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance= 50kW/m2, initial foam height= 50mm. I C-47 _ US00003197 fm11032.dat Fig. C93- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance= 50kW/m2, initiai foam height= 50mm. fm11032.dat Fig. C94- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, inradiance= 50kW/m2, initial foam height= 50mm. C-48 US00003198 fm11032.dat Fig. C95- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance= 50kW/m2, initial foam height= 50mm. fm11032.dat Fig. C96- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 3.04, irradiance^ 50kW/m2, initial foam height= 50mm. C-49 US00003199 Fig. C97- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam beight= 75mm. Fig. C98- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam height= 75mm. C-50 US00003200 fm11033.dat Fig. C99- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam height= 75mm. fm 1 1033.dat Fig. Cl 00- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam heigbt= 75mm. C-51 US00003201 fnrrU033.dat Fig. Cl 01- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam height^ 75mm. fm11033.dat Fig. Cl 02- Effective heat o f vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam height^ 75mm. C-52 US00003202 Fm1t033.dat Fig, Cl 03- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initit foam height= 75mm. fm 1103 3 .d at Q. Q X E Fig. Cl 04- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 2.71, irradiance= 50kW/m2, initial foam height= 75mm. I C-53 US00003203 Fig. C l05- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= OkW/niZ, initial foam height= 25mm. fm10200.dat 25 -------------------------- X Fuel OO mm 25 mm + 50 mm * 100 mm 5 0 ---- . r , 0 100 200 300 400 500 600 700 800 900 1000 Time [sec] Fig. C106- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= 0kW/m2, initial foam heights 25mm. C-54 US00003204 fm10200.dat Fig. C107- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= 0kW/m2, initial foam beight= 25mm. fm10200.dat Fig. C l08- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= 0kW/m2, initial foam heigbt= 25mm. C-55 US00003205 fm10200.dat Fig. Cl 09- Drain rate versus foam mass in tests with foam on JP-5 at 20C- Test conditions: expansion ratio= 4.67, irradiance^ 0kW/m2, initial foam heigbt= 25mm. fm10200.dat Time [sec] Fig. C l 10- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= 0kW/m2, initial foam height= 25mm. C-56 US00003206 fm10200.dat Time [sec] Fig. Cl 11- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= 0kW/m2, initial foam height= 25mm. fm10200.dat Time [sec] Fig. C 112- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.67, irradiance= QkW/m2, initial foam heighf= 25mm. C-57 US00003207 Fig- Cl 13- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.98, irradiance= 0kW/m2, initial foam beigbt= 50mm. Fig. C l 14- Foam lemperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.98, ijTadiance= 0kW/m2, initial foam heigbt= 50mm. C-58 US00003208 fm10201.dat Fig. CJ15- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.98, irradiance= 0kW/m2, initial foam height^ 50mm. fm10201.dat Fig. CI 16- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--4.98, irradiance= 0kW/m2, initial foam height= 50mm. t C-59 US00003209 fm10201.dat T4.n980,CiIrr1a7d'iaDnrcaei=n 0raktWe V/merS2U, Sinfi0tiaaml fmoaamSShienigtehstt=s W50imthmfo. am on JP"5 at 20C- Tcst conditions: expansion ratio= fm10201.dat Fig. C l 18- EiFective heat of-vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 4.98, irradiance= 0kW/m2, initial foam height=50mm. C-60 US00003210 fm10201.dat Time [sec] Fig. Cl 19- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 4.98, irradiance= 0kW/m2, initial foam height= 50mm. fm10201.dat Time [sec] Fig. C l20- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 4.98, irradiance= 0kW/m2, initial foam heigbt= 50mm. C-61 US00003211 Fig. C 12I- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam height= 75mm. Fig. Cl 22- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam height= 75mm. C-62 US00003212 fm10203-dat Fig- C123- Drain rate in tests with foam on TP-5 at 20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam beight= 75mm. fm10203.dat Fig. C124- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam height= 75mm. f C-63 US00003213 fm10203.dat Fig. C125- Drain rate versus foam mass in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam height^ 75mm. fm10203.dat Time [see] Fig. C126- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ration 5.45, irradiance= 0kW/m2, initial foam height= 75mm. C-64 US00003214 fm10203.dat Time [sec] Fig. 0 2 7 - Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam height^ 75mm. fm10203.dat Time [see] Fig. Cl 28- Foam height depletion rate in tests with foam on JP-5 at20C. Test conditions: expansion ratio= 5.45, irradiance= 0kW/m2, initial foam height=75mm. C-65 US00003215 Fig. Cl 29- Mass data in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 5.37, irradiance= 20kW/m2, initial foam height= 25mm. Fig. Cl 30- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.37, irradiance= 20kW/m2, initial foam height= 25mm. . C-66 US00003216 fm10261.dat Fig. C13I- Drain rate in lests with foam on .IP-5 at 20C. Test conditions; expansion ratio= 5.37, irradiance= 20kW/m2, initial foam beight= 25mm. fm10261.dat Fig. C132- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 5.37, irradiance= 20k'W/m2, initial foam height= 25mm. C-67 US00003217 fm 10261 .dat Fig. C133- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.37, irradiance= 20kW/m2, initial foam height^ 25mm. Fig. C I34- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.37, irradiances 20kW/m2, initial foam height^ 25mro. C-68 US00003218 fm10261.dat Fig. C135- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--5.37, irradiance= 20kW/m2, initial foam height= 25mm. fm10261.dat Fig. C136- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio5.37, irradiance= 20kW/m2, initial foam height= 25mm. C-69 US00003219 Fig. C137- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance= 20kW/m2, initial foam height= 50mtn. Fig. C138- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance= 20kW/m2, initial foam height= 50mm. C-70 US00003220 fm10262.dat Fig, C139- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance= 20kW/m2, initial foam height= 50mm. fm10262.dat Fig. C l40- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance= 20kW/m2, initial foam height= 50mm. C-71 US00003221 fm10262.dat Fig. Cl 43 - Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6,12, irradiance= 20kW/m2, initial foam height= 50mm. fm10262.dat Fig. C142- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance= 20kW/m2, initial foam heigbt= 50mm. C-72 US00003222 fm10262.dat Fig. Cl 43- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance= 20kW/m2, initial foam height= 50mm. fm10262.dat owJ' E E IX c o .Oc) x E o Fig. Cl 44- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.12, irradiance=20kW/m2, initial foam heighi= 50mm. C-73 US00003223 fm 10273.dat + Mass drained Mass evaporated A M ass in pan Mass Balance Fig. C145- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion raiio= 5.16, irradiance= 20kW/m2, initial foam height^ 75mm. Fig. C146- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--5.16, irradiance= 20kW/m2, initial foam height= 75mm. C-74 US00003224 fm10273.dat Fig. C l47- Drain rate in tests with foam on JP o at 20C. Test conditions: expansion ratio= 5.16, irradiance= 20kW/m2, initial foam height= 75mm. fm10273.dat Fig. C148- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.16, irradiance= 20kW/m2, initial foam height= 75mm, C-75 US00003225 fm10273.dat Fig. C149- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.16, irradiance= 20kW/m2, initial foam h e ig h t 75mm. fm10273.dat Fig. Cl 50- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.16, irradiance= 20kW/m2, initial foam height= 75mm. . C-76 US00003226 fm10273.dat Fig. C!51- Foam height in tests with foam on TP-5 at 20C. Test conditions: expansion ratio= 5.16, irradiance= 20kW/m2, initial foam height= 75mm. fm10273.dat OQ V) s E 2 a: Q CcLo X uEroo. Fig. C152- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.16, irradiance= 20kW/m2, initial foam height= 75mm. C-77 US00003227 Fig. Cl 53- Mass data in tests with foam on 3P-5 at 20C. Test conditions: expansion ratio= 6.27, inadiance= 35kW/m2, initial foam height= 25mm. fm10274.dat 600 500 - X Fuel OO mm 25 mm + 50 mm A 100 mm too g 300 Q. E 200 100 100 150 200 250 Time [sec] Fig. C154- Foam temperature in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam beight= 25mm. C-78 US00003228 fm10274.dat Fig. Cl 55- Drain rate in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam height= 25mm. fm10274.dat Fig. C156- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam height^ 25mm. C-79 US00003229 fm10274.dat Fig. C157- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam height^ 25mm. fm 10274.dat Fig. C158- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam height^ 25mm. C-80 US00003230 fm 10274.dat Fig. Cl 59- Foam height in tests with foam on JP-5 at 20C, Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam heights 25mm. fm10274.dat Fig. C160- Foam height depletion rate in tests with foam on JP-5 at 20C, Test conditions: expansion ratio= 6.27, irradiance= 35kW/m2, initial foam height= 25mm. C-81 US00003231 Fig. Cl 61- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.95, irradiance= 35kW/m2, initia) foam height= 50mm. Fig. Cl 62- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.95, irradiance= 35kW/m2, initial foam height^ 50mm. C-82 US00003232 fm10275.dat Fig. Cl 63- Drain rate in tests with foam on IF'-5 at 20C. Test conditions: expansion ratio= 5.95, irradiance= 35kW/m2, initial foam height= 50mm. fm10275.dat Fig. C164- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ration 5.95, irradiance= 35kW/m2, initial foam height= 50mm. i C-83 US00003233 fm10275.dat Fig. C l65- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.95, irradiance=35kW/m2, initial foam height= 50mm. Fig. Cl 66- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.95, irradiance= 35kW/m2, initial foam beight= 50mm. C-84 US00003234 fm10275.dat Fig. 0 6 7 - Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 5.95, irradiance= 35kW/m2, initial foam height= 50mm. fm 10275.dat 0.7 0.6 0.5 0.4 0.3 0.2 X 0.1 50 100 150 200 250 300 350 - 0.1 Time [sec] Fig. C l68- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio5.95, irradiance= 35kW/m2, initial foam height= 50mm. C-85 US00003235 Fig. C l69- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.42, irradiance= 35kW/m2, initial foam height= 75mm. Fig. C l70- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.42, irradiance= 35kW/m2, initial foam height= 75mm. C -86 US00003236 fm10276.dat Fig. C17I- Drain rate in tests with foam on IP-5 at 20C, Test conditions: expansion ratio=5.42, irradiance= 35kW/m2, initial foam height= 75mm. fm10276.dat Fig. C l72- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.42, irradiance= 35kW/m2, initial foam height= 75mm. C-87 US00003237 fm10276.dat Fig. Cl 73- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.42, iiTadiance= 35kW/m2, initial foam height= 75mm. fm10276.dat Fig. C174- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.42, irradiance= 35kW/m2, initial foam height= 75mm. C-88 US00003238 fm10276.dat Fig. Cl 75- Foam height in lestswith foam on JP-5 a! 20C. Test conditions: expansion ratio- 5.42, irradiance= 35kW/m2, initial foam height= 75mm. fm 10276.dat 0.45 j ] 1 o' vj OS E E. . . . a> ' . ni ` oc o JE QJ U. 1ii ' Q -C 9 X rfl U.Uj uO. 0 I -0.05 50 100 150 200 250 300 350 400 450 5 Time [sec] Fig. Cl 76- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 5.42, irradiance= 35kW/m2, initial foam height= 75mm. C-89 US00003239 Fig, C177- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.71, irradiance= 50k\V/m2, initial foam height= 25mm, Fig. C178- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio - 5.71, irradiance= 50kW/m2, initial foam heights 25mm, C-90 US00003240 fm10280.dat Fig. C179- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.71, irradiance= 50kW/m2, initial foam height= 25mm. fm 1 0 2 8 0 .dat Fig. Cl SO- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.71, irradiance= 50kW/m2, initial foam height= 25mm. C-91 US00003241 fm10280.dat Fig. Cl 81- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.71, irradiance= 50kW/m2, initial foam height^ 25mm. Fig. C l 82- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.71, irradiance= 50kfW/m2, initial foam height= 25mm. C-92 US00003242 fm10280.dat Fig. Cl 8 3 -Foam height in tests with foam on JP-5 at20C. Test conditions: expansion ratio - 5.71, irradiance= 50kW/m2, initial foam height= 25mm. fm10280.dat 1.5 D.5 X E -0.5 1 50 100 150 2 0 0 250 Time [sec] Fig. C 184- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 5.71, irradiance= 50kW/m2, initial foam height= 25mm. C-93 US00003243 Fig. Cl 85- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance= 50kW/m2, initial foam heigbt= 50mm. Fig. 0 8 6 - Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance= 50kW/m2, initial foam height= 50mm. C-94 US00003244 fm10281.dat Fig. C187- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance50kW/m2, initial foam height= 50mm. fm10281.dat Fig. Cl 88- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance= 50kW/m2, initial foam height^ 50mm. C-95 US00003245 fm10281.dat Fig. Cl 89- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance= 50kW/m2, initial foam height= 50mm. fm10281.dat 'Fig. C190- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance= 50kW/m2, initial foam height= 50mm. C-96 US00003246 fm10281.dat Fig- C191- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.2, irradiance50kW/m2, initial foam height= 50mm. fm 10281.dat Fig. C192- Foam height depletion late in tests with foam on JP-5 at 20C. Test conditions: expansion ratio5.2, irradiance= 50kW/m2, initial foam height= 50mm. C-97 US00003247 Fig. C l93- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.88, irradiance= 50kW/m2, initial foam height= 75mm. Fig. Cl 94- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.88, irradiance= 50kW/m2, initial foam height= 75mm. C-98 US00003248 fm10282.dat Fig. C195- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 4.88, irradiance50kW/m2, initial foain height= 75mm. fm10282.dat Fig. CI96- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 4.88, irradiance= 50kW/m2, initial foam height= 75mm. C-99 US00003249 fm10282.dat Fig. Cl 97- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio4.88, irradiance= 50kW/m2, initial foam height= 75mm. fm 1 0 2 8 2 .d a t Fig. C l 98- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 4.88, irradiance= 50kW/m2, initial foam height^ 75mm. C-lOO US00003250 fm10282-dat 120 Fig. Cl 99- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio - 4.88, irradiance= 50k:W/m2, initial foam height= 75mm. fm10282.dat 1.5 0.5 E C 0 c Q -0.5 X E -1 r 50 100 150 200 250 300 350 f 400 450 -1.5 Time [sec] Fig. C200- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio4.88, irradiance= 50kW/m2, initial foam height= 75mm. C-101 US00003251 Fig. C201- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.06, irradiance= 0kW/m2, initial foam height=25mm. fm 10 2 0 4 .d a t E 5- 0 ................... . ,-r- .. ........... .. ....... , ................. 0 100 200 300 400 500 600 700 S00 900 1000 Time [sec] Fig. C202- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.06, irradiance= 0kW/m2, initial foam height= 25mm. C-102 US00003252 fm10204.dat 0kW/m2, initial foam height= 25mm. fm 10204.dat Fig. C204- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 6.06, irradiance= 0kW/m2, initial foam heigbt= 25mm. C-103 US00003253 fm10204.dat Fig- C205- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.06, irradiance= 0kW/m2, initial foam beight= 25mm. fm10204.dat 9000 8000 7000 S' 6000 =cruo 5000 J 4000 S 3000 2000 1000 100 200 300 400 500 600 700 800 900 1000 Time [sec] Fig. C206- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.06, irradiance= 0kW/m2, initial foam height= 25mm. C-104 US00003254 fm10204.dat Time [sec] Fig. C207- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.06, i[radianee= 0kW/m2, initial foam height= 25mm. fm10204.dat Time [sec] Fig. C208- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.06, irradiance= 0kW/m2, initial foam height= 25mm. C-105 US00003255 Fig. C209- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ration 10.4, irradiance= 0kW/m2, initial foam height= 50mm. fm10205.dat 100 200 300 400 500 600 700 Time [sec] 900 1000 Fig. C210- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance= 0kW/m2, initial foam height= 50mm. C-106 US00003256 fm10205.dat Fig. C211- Drain rate in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance= 0kW/m2, initial foam beight= 50mm. fm10205.dat Fig. C212- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance- 0kW/m2, initial foam height= 50mm. C-107 US00003257 fm10205.dat Fig. C 213- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance= OkW/ml, initial foam height= 50mm. fm10205.dat Time tsec] Fig. C 2 14- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance= 0kW/m2, initial foam hejght= 50mm. C-108 US00003258 fm10205.dat Time [sec] Fig. C 215- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance= 0kW/m2, initial foam bejght= 50mm. fm10205.dat Time [sec] Fig. C2I6- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.4, irradiance= 0kW/m2, initial foam height= 50mm. C-109 US00003259 Fig. C217- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.73, irTadiance= 0kW/m2, initial foam heigbt= 75mm. Time [sec] Fig. C218- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.73, irradiance= 0kW/m2, initial foam height= 75mm. C-I10 L US00003260 fm10206.dat Fig. C219- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.73, irradiance= 0kW/m2, initial foam height= 75mm. fm1020S.dat Fig. C220- Evaporation rate in tests with foam on IP-5 at 20C. Test conditions: expansion ratio - 8.73, irradiance= 0k\V/m2, initial foam height= 75mm, C -lll US00003261 fm10206.dat Fig. C221- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio8.73, irradjance= 0kW/m2, initial foam height= 75mm. fm10206.dat Time [sec] Fig. C222- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.73, irTadiance= 0kW/m2, initial foam heighf= 75mm. C-1I2 US00003262 fm10206.dat Time [sec3 Fig. C223- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ration 8.73, irradiance= 0kW/m2, initial foam height= 75mm. fm 1 0 2 0 6 .d at Time [sec] Fig. C224- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.73, irradiance= 0kW/m2, initial foam heights 75mm. C-I13 US00003263 Fig. C225- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.23, irradiance= 20kW/m2, initial foam height= 25mm. Fig. C226- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.23, irradiance= 20kW/m2, initial foam height= 25mm. C-114 US00003264 fm10207.dat Fig. C221- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--6.23, irradiance^ 20kW/m2, initial foam height= 25mm. fm10207.dat Fig. C228- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions', expansion ratio--6.23, irradiance= 20kW/m2, initial foam heights 25mm. C - 115 US00003265 fm10207.dat 0 0 5 1 1.5 2 2.5 3 3.5 4 4.5 Foam Mass per Unit Area [kg/m2] Fig. C229- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.23, irradiance=20kW/m2, initial foam beight= 25mm. fm10207.dat Fig. C230- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ration 6.23, irradiance= 20kW/m2, initial foam height^ 25mm. C-116 US00003266 fm10207.dat Fig. C 231- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 6.23, irradiance= 20kW/m2, initial foam height= 25mm. fm10207.dat Fig. C232- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 6.23, irradiance= 20kW/m2, initial foam height= 25mm. C-117 US00003267 fm10208.dat + Mass drained Mass evaporated A Mass in pan Mass Balance Fig. C233- Mass data in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam height= 50mm. Fig. C234- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam height= 50mm. C -118 US00003268 fm10208.dat Fig. C235- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam heights 50mm. fm 1 0 2 0 8 .d at Fig. C256- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, i[radiaiice~ 20kW/m2, initial foam height= 50mm. C-119 US00003269 fm10208.dat Fig. C237- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam height^ 50mm, fm10208.dat Fig. C238- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam height^ 50mm. C-120 . US00003270 fm10208.dat Fig. C239- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam height= 50mm. fm 1 0 208.dat Fig. C240- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.68, irradiance= 20kW/m2, initial foam hejght= 50mm. C-121 US00003271 fm102010.dat 4- M a s s drained Mass evaporated Mass in pan Mass Balance Time [sec] Fig. C24I- Mass data in tests with foam on JP-5 at 20C. Test conditions; expansion ratio= 9.39* irradiance= 20kW/m2, initial foam heights 75mm. Fig. C242- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio" 9.39, irradiance= 20kW/m2, initial foam heights 75mm. C-122 US00003272 fm102010.dat Fig. C243- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.39, irradiance= 20kW/m2, initial foam height= 75mm. fm102010.dat Fig. C244- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio" 9.39, irradiance= 20kW/m2, initial foam heigbt= 75mm. C-123 US00003273 fm102010.dat Foam Mass per Unit Area [kg/m2J Fig. C245- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.39, irradiance= 20kW/m2, initial foam beight= 75mm. fm102010.dat Fig. C246- Effective heat o f vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.39, irradiance= 20kW/m2, initial foam height= 75mm. C-124 US00003274 fm102010.dat Fig. C247- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.39, irradiance= 20kW/m2, initial foam height= 75mm. fm102010.dat Fig. C248- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.39, irradiance= 20kW/m2, initial foam height= 75mm. C-125 US00003275 fm102011 dat + Mass drained Mass evaporated A Mass in pan Mass Balance Time tsec] Fig. C249- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.96, irradiance= 35kW/m2, initial foam height= 25mm. Fig. C250- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- ' 5.96, irradiance= 35kW/m2, initia] foam height= 25mm. C-126 US00003276 fm102011.dat Fig. C251- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5,96, irradiance= 35kW/m2, initia] foam height= 25mm. fm102011 dat Fig. C252- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.96, irradiance= 35kW/m2, initial foam heigbt= 25mm. C-127 US00003277 fm102011.dat Fig. C253- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.96, irradiance= 35kW/m2, initiai foam height= 25mm. Fig. C254- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.96, irradiance= 35kW/m2, initial foam height= 25mm. C-128 US00003278 fm102011.dat Fig. C255- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 5.96, irradiance= 35kW/m2, initial foam height^ 25mm. fm102011.dat Fig. C256- Foam height depletion rate in tests with foam on IP-5 at 20C. Test conditions: expansion ratio= 5.96, irradiance= 35kW/m2, initial foam height= 25mm. C-129 US00003279 fm102012.dat N E + Mass drained Mass evaporated A Mass in pan Mass Balance Time [sec] Fig. C257- Mass data in tests with foam on TP-5 at 20C. Test conditions: expansion ratio= 10.01, irradiance= 35kW/m2, initial foam height^ 50mm. Fig. C258- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.0], irradiance= 35kW/m2, initial foam height= 50mm. C-130 US00003280 fm102012.dat Fig- C259- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.01, i i T a d i a n c e = 35kW/m2, initial foam beight= 50mm. fml02012.dat Fig. C260- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.01, irradiance - 35kW/m2, initial foam height= 50mm. C-131 US00003281 fm102012. da! Fig. C261- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.01, irradiance= 35kW/m2, initial foam height= 50mm. fm102012.dat Fig. C262- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.01, irradiance= 35kW/m2, initial foam height= 50mm. C-132 US00003282 fm102012.dat Fig. C263- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.01, irradiance^ 35kW/m2, initial foam height= 50mm. fm 102012.dat Fig. C264- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio10.01, irradiance= 35kW/m2, initial foam heigbt= 50mm. C-133 US00003283 fm10210.dat + Mass drained Mass evaporated A Mass in pan Mass Balance 0 50 100 150 200 250 300 350 400 Time {sec] Fig. C265- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, irradiance= 35kW/m2, initial foam height= 75mm. Fig. C266- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, irradiance= 35kW/m2, initial foam height= 75mm. C-134 US00003284 fm10210.dat Fig. C267- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, irradiance= 35kW/m2, initia! foam height= 75mm. fm10210.dat Fig. C268- Evaporation rate in tests with foam on IP-5 at 20C. Test conditions: expansion ratio ! 8.46, irradiance= 35kW/m2, initia] foam height= 75mm. C-135 US00003285 fm10210.dat Fig. C269- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, in-adiance=35kW/m2, initial foam height= 75mm. fm10210.dat Fig. C270- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, irradiance= 35kW/m2, initial foam height= 75mm. C-136 US00003286 fm10210.dat Fig. C271- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, irradiance= 35kW/m2, initiai foam heighh= 75mm. fm10210.dat OW E E tcoz. Q JC X E Fig. C272- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 8.46, irradiance= 35kW/m2, initial foam height= 75mm. C-137 US00003287 + W!ass drained Mass evaporated A Mass in pan 0 20 40 60 80 100 120 140 160 180 200 Time [sec] Fig. C273- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 7.26, irradtance= 50kW/m2, initial foam h e ig h t 25mm. Fig. C274- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 7.26, irradiance= 50kW/m2, initial foam heights 25mm. C-138 US00003288 fm10220.dat Fig, C275- Drain rate in tests with foam on JP-5 at 20C, Test conditions: expansion ratio= 7.26, irradiance= 50kW/m2, initial foam height= 25mm, fm10220.dat Fig. C276- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio--7,26, irradiance= 50kW/m2, initial foam height= 25mm. C-I39 US00003289 fm10220.dat Fig. C277- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 7.26, irradiance^ 50kW/m2, initial foam height= 25mm. fm10220.dat Fig. C278- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 7.26, irradiance= 50kW/m2, initial foam height= 25mm. C-140 US00003290 fm10220.dat Fig. C279- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 7.26, irradiance= 50kW/m2, initial foam beight= 25mm. fm10220.dat Fig. C280- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 7.26, irradiance= 50kW/m2, initial foam height= 25mm. C-141 US00003291 fm10221.dat + Mass drained Mass evaporated A Mass in pan Mass Balance Fig. C281- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.56, irradiance= 50kW/m2, initia! foam height= 50mm. Fig. C282- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.56, irradiance= 50kW/m2, initial foam height= 50mm. C-142 US00003292 fm1Q221.dat Fig. C283- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.56, irradiance= 50kW/m2, initial foam height= 50mm. fm10221.dat Fig. C284- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio-- 9.56, irradiance= 50kW/m2, initial foam height= 50mm. C-143 US00003293 fm10221.dat Foam Mass per Unit Area [kg/m2] Fig. C285- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.56, irradiance= 50kW/m2, initial foam heigbt= 50mm. fm10221.dat Fig. C286- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 9.56, irradiance= 50kW/m2, initial foam height= 50mm. C-144 US00003294 fm10221.dat Fig. C287- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 9.56, irradiance= 50kW/m2, initial foam height= 50mm. fm10221.dat Fig. C288- Foam height depletion rate in tests with foam on JP-5 at 20C, Test conditions: expansion ratio9.56, irradiance= 50kW/m2, initial foam height= 50mm. C-145 US00003295 fm10222.dat +-Mass drained Mass evaporated A Mass in part Mass Balance 0 50 100 150 200 250 300 350 Time [secj Fig. C289- Mass data in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, irradiance= 50kW/m2, initial foam height= 75mm. Fig. C290- Foam temperature in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, rradiance= 50kW/m2, initial foam height= 75mm. C-146 US00003296 fm10222.dat Fig. C291- Drain rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, irradiance= 50kW/m2, initial foam height= 75mm. fm10222.dat Fig. C292- Evaporation rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, irradiance= 50kW/m2, initial foam height= 75mm. C-147 US00003297 fm10222.dat Foam Mass per Unit Area [kg/m2] Fig. C293- Drain rate versus foam mass in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, irradiance= 50kW/m2, initial foam height= 75mm. o 50 100 150 200 250 300 350 Time [see] Fig. C294- Effective heat of vaporization in tests with foam on JP-5 at 20C. Test conditions: expansion ratio- 10.64, irradiance =50kW/m2, initial foam height= 75mm. C-148 - US00003298 fm10222.dat Fig. C295- Foam height in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, irradiance= 50kW/m2, initial foam height= 75mm. fm 1 0 2 2 2 .d a t Fig. C296- Foam height depletion rate in tests with foam on JP-5 at 20C. Test conditions: expansion ratio= 10.64, irradiance= 50kW/m2, initial foam height= 75mm. C-149 US00003299 APPENDLX D TEST DATA - FOAM ON TOP OF .IP-5 AT 50C D-l US00003300 Fig. D l- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam height^ 25mm. Fig. D2- Foam temperature in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam heigbt= 25mm. D-2 US00003301 fm11034.dat Fig. D3- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam height= 25mm. fm11034.dat Fig. D4- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam height= 25mm. D-3 US00003302 fm11034.dat Fig. D5- Drain rate versus foam mass in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam beight= 25mm. Fig. D6- Effective heat of vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam height= 25mm. D-4 US00003303 fm11034.dat Fig. D7- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 4.32, irradiance= 20kW/m2, initial foam beight= 25mm. fm 11034.dat Fig. D8- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ration 4.32, irradiance= 20kW/m2, initial foam height= 25mm. D-5 US00003304 Fig. D9- Mass data in tests with foam on IP-5 at 50C. Test conditions: expansion ratio= 5.81, irradiance= 20kW/m2, initial foam height= 50mm. Time Isec] Fig. DIO- Foam temperature in tests with foam on IP-5 at 50C. Test conditions: expansion ratio= 5.81, irradiance= 20kW/m2, initial foam height= 50mm. D-6 . US00003305 fm 1 1035.dat Fig. D 11- Drain rate in tests with foam on JP-5 at 50C, Test conditions: expansion raiio= 5,81, irradiance= 20kW/m2, initial foam heights 50mm. fm 1 1035.dat Fig. D12- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 5.81, irradiance= 20kW/m2, initial foam height= 50mm. D-7 US00003306 fm11035.dat Fig. DI 3- Drain rate versus foam mass in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 5,8), irradiance= 20kW/m2, initial foam height= 50mm. Fig. D14- Effective heat of vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 5.8), irradiance - 20kW/m2, initial foam height= 50mm. D-8 US00003307 fm11035.dat Time [sec] Fig. D15- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 5.81, irradiance= 20kW/m2, initial foam height= 50mm. fm11035.dat Time [sec] Fig. D16- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 5.81, irradiance^ 20k\V/m2, initial foam height= 50mm. D-9 US00003308 Fig. DI 7- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance= 20kW/m2, initial foam height= 75mm. Time [sec] Fig. D I 8- Foam temperature in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance= 20kW/m2, initial foam height= 75mm. D-10 US00003309 fm11036.dat Fig- DI 9- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance= 20k\V/m2, initial foam height= 75mm. fm11036.dat Fig. D20- Evaporation rate in tests with foam on JP-5 at 50C, Test conditions: expansion ratio= 6.33, irradiance= 20kW/m2, initial foam height= 75mm. D-l 1 US00003310 fm11036.dat Fig. D21 - Drain rate versus foam mass in tests witb Foarn on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance^ 20kW/m2, initiai foam heighff 75mm. fm11036.dat Fig. D22- Effective heat of vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance= 20kW/m2, initiai foam height= 75mm. D-I2 US00003311 fm11036.dat Fig. D23- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance= 20kW/m2, initial foam height^ 75mm. fm 1 1 0 3 6 .d a t Fig. D24- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.33, irradiance= 20kW/m2, initial foam height= 75mm. D-13 US00003312 Fig. D25- Mass data in tests "with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.85, irradiances 35kW/m2, initial foam height=25mm. Time [sec] Fig. D26- Foam temperature in tests with foam on JP-5 at 50C, Test conditions: expansion ratio= 6.85, irradiance= 35kW/m2, initial foam height= 25mm. D-14 US00003313 fm11050.dat Fig. D27- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.85, irradiance= 35kW/m2, initiai foam height= 25mm. 0 50 to o 150 200 250 300 350 400 Time [sec] Fig. D28- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.85, irradiance= 35kW/m2, initial foam height^ 25mm. 450 D-15 US00003314 fm11050.dat Fig. D29- Drain rate versus foam mass in tests with foam on ]P-5 at 50C. Test conditions: expansion ratio= 6.85, irradiance= 35kW/m2, initial foam height= 25mm. Fig. D30- Effective heat of vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.85, irradiance^ 35kW/m2, initial foam height= 25mm. D'16 US00003315 fm11050.dat Fig. D 31- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.85, irradiance= 35kW/m2, initial foam height= 25mm. fm11050.dat BO ---------------------------------- ---------------------------------------------------------------------------------------------------------- 60 o - 6 0 ------------------------------------------------------------------------------------------------------- Time [sec] Fig. D32- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ration 6.85, irradiance= 35kW/m2, initial foam height^ 25mm. D-17 US00003316 Fig. D33- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.76, irradiance= 35kW/m2, initial foam height= 50mm. Time [secj Fig. D34- Foam temperature in tests with foam on JP-5 at 50C, Test conditions: expansion ratio= 6.76, irradiance^ 35kW/m2, initial foam heighf= 50mm. . D-18 US00003317 fm11051.dat Fig. D35- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.76, irradiance= 35kW/m2, initia] foam height= 50mm. fm11051.dat Fig. D36- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.76, irradiance= 35kW/m2, initial foam height= 50mm. D-19 US00003318 fm11051.dat Fig. D37- Drain rate 'versus foam mass in tests with foam on JP-5 at 50C. Test conditions; expansion ratio-- 6.76, irradiance= 35kW/m2, initial foam height= 50mm. fm11051.dat Fig. D38- Effective beat of vaporization in tests with foam on JP-5 at 50C. Test conditions; expansion ratio= 6.76, irradiance= 35kW/m2, initial foam height= 50mm. D-20 US00003319 fm11051.dat Fig. D39- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.76, irradiance^ 35kW/m2, initial foam beight= 50mm. fm 11 0 5 1 .d a t i E 50 100 150 200 250 300 "350------------ 400 450 -2 Time [sec] Fig. D40- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.76, irradiance= 35kW/m2, initial foam height= 50mm. D-21 US00003320 Fig. D 41- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.57, irradiance= 35kW/m2, initial foam height= 75mm. fm11053.dat EE o X Fuel o 25 mm + 50 mm A ioo mm too 200 300 400 500 600 700 Tim e [se c] Fig. D42- Foam temperature in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.57, irradiance= 35kW/m2, initial foam height= 75mm. D-22 US00003321 fm 1 1053.dat Fig. D43- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.57, irradiance= 35kW/m2, initia! foam height= 75mm. fm11053.dat Fig. D44- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.57, irradiance= 35kW/m2, initial foam heights 75mm. D-23 US00003322 fm11053.dat 04 E tn < CoO T C Q 0 5 10 15 20 25 30 Foam Mass per Unit Area [kg/m2] Fig. D45- Drain rate versus foam mass in tests with foam on JP-5 at 50C. Test conditions: expansion ratlo= 6.57, irradiance= 35kW/m2, initial foam height= 75mm. o 100 200 300 400 500 600 700 Time [sec] Fig. D46- Effective heat of vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.57, irradiance= 35kW/m2, initial foam height= 75mm. D-24 US00003323 im11053.dat Fig. D47- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.57, irradiance= 35kW/m2, initia! foam heigbt= 75mm. fm11053.dat Fig. D48- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6,57, irradiance= 35kW/m2, initial foam heights 75mm. D-25 US00003324 Fig. D49- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance" 50kW/m2, initial foam height" 25mm. Time [sec] Fig. D50- Foam temperature in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance= 50kW/m2, initial foam height" 25mm. D-26 US00003325 fm 1 1054.dat Fig. D 51- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance= 50kW/m2, initial foam height= 25mm. fm 11054.dat Fig. D52- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance= 50kW/m2, initial foam height= 25mm. D-27 US00003326 fm11054.dat Fig. D53- Drain rate versus foam mass in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance= 50kW/m2, initial foam height= 25mm. Fig. D54- Effective heat o f vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance= 50kW/m2, initial foam height= 25mm. D-28 US00003327 fm 1 1054.dat Fig. D55- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ration 6.75, irradiance^ 50kW/m2, initial foam height= 25mm. fm11054.dat Fig. D56- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.75, irradiance= 50kW/m2, initial foam height= 25mm. D-29 US00003328 Fig, D57- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initial foam heigbt= 50mm. Time [sec] Fig. D58- Foam temperature in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initial foam height= 50mm. D-30 US00003329 fm11055.dat Fig. D59- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initial foam h e ig h t 50mm. fm11055.dat Fig. D60- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initial foam beight= 50mm. D-3l US00003330 fm11055.dat Fig. D6D Drain rate versus foam mass in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initial foam beight= 50mm. fm11055.dat Fig. D62- Effective heat o f vaporization in tests with foam on JP-5 at 50C, Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initial foam height= 50mm. D-32 US00003331 fm11055.dat Fig. D63- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.92, irradiance= 50kW/m2, initiai foam height= 50mm. fm 11055.dat Fig. D64- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion raticr= 6.92, irradiance= 50kW/m2, initial foam height= 50mm. D-33 US00003332 Fig. D65- Mass data in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.61, irradiance= 50kW/m2, initial foam height= 75ntm. Time [sec] Fig. D66- Foam temperature in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6,61, irradiance= 50kW/m2, initial foam height= 75mm. D-34 US00003333 fm11056.dat Fig. D67- Drain rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.61, irradiance= 50kW/m2, initial foam height= 75mm. fm11056.dat Fig. D68- Evaporation rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio--6.61, irradiance= 50kW/m2, initial foam height= 75mm. D-35 US00003334 fm11056.dat Fig. D69- Drain rate versus foam mass in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.61, irradiance= 50kW/m2, initial foam heigbt= 75mm. fm11056.dat Fig. D70- Effective heat of vaporization in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.6!, irradiance= 50kW/m2, initial foam height= 75mm. D-36 US00003335 fm11056.dat Fig. D71- Foam height in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.61, irradiance= 50kW/m2, initial foam height= 75mm. fm11056.dat OQ<>n s tnej Q tBoTcO Fig. D72- Foam height depletion rate in tests with foam on JP-5 at 50C. Test conditions: expansion ratio= 6.61, irradiance= 50kW/m2, initial foam height= 75mm. D-37 US00003336 APPENDIX E DROP THROUGH TEST DATA E-l US00003337 Drop through tests were performed in the container shown in Fig. E -l. The square Pyrex container was 0.10 m on each side and was 0,10 m high. The side port was used to insert a 1.5 mm diameter, Type K sheathed thermocouple into the container to monitor the fuel temperature. For tests at elevated fuel temperatures, the container was placed on a hot plate to ensure the fuel temperature remained relatively constant over the test duration. Tests were performed with 200 mL of fuel in the lower part of the container. AFFF solution was manually added to the surface directly using a 500 pL Hamilton syringe with a Chaney adaptor for improved precision. The calibrated scale on the side of the syringe was used to monitor the amount of solution added to the surface. The addition accuracy was limited to the volume of a single drop of solution, which was approximately 10 pL. During solution addition, the syringe was approximately 3.0 mm from the fuel surface to minimize the vertical acceleration effects of the drop. Two solution application methods were used in this study, 1) same location and 2) random locations. Data were recorded on the volume of solution necessary to cause one to five drop of solution to fall through the surface. Tests were performed with three different types of fuel: -Hexane (Fisher Spectranalyzed grade), Cyclohexane (Fisher Spectranalyzed grade) and JP-5 fuel obtained from Naval Research Laboratory (NRL) at their Chesapeake Beach Detachment (CBD). Fuels were tested at room temperature (~20C) and at approximately 66C. The AFFF concentrate was 3M 6% AFFF, FC 206CF. To aid in the visualization of the AFFF spreading over the fuel surface, a water soluble fluorescent dye was added to the solution. Tests without the dye confirmed the dye had no impact on the drop through results. E-2 Pyrex Test Syringe Figure E- 1. The drop through test apparatus The results of the tests on the three different fuels at room temperature are provided in Tables El - E3. When the solution was initially added, it was observed to spread out radially from the addition point over the fuel surface. As additional solution was added, depressions began to develop in the fuel surface where the AFFF solution was collecting. Adding more solution caused these depressions to become deeper and more defined until, eventually, the weight of the solution in the depression exceeded the interfacial surface tension resistance. At this point, the majority of the solution in the depression dropped through the surface and fell to the bottom of the container. Solution added at a single location developed fewer depressions than solution added at random locations. The amount of solution necessary for drop through was found to be somewhat fuel dependent. The -Hexane fuel was found to require the least amount of solution to cause the first drop to fall through the surface, while JP-5 required the most. This result is consistent with the interfacial surface tension results for these fuels. Of the three fuels, -Hexane has the lowest interfacial surface tension meaning this fuel has the least resistance to solution drop through. Less solution had to be added to the surface to cause subsequent drops to fall through. This E-3 US00003339 amount ranged from 30-56 p.L (on average) for the different fuels tested when solution was added at a single location. Tests where solution was added at random locations on the fuel surface required 2-3 times more solution to for the initial drop to fall through the surface. However, only slightly more solution, 30-76 pL (on average), was necessary to cause subsequent drops to fall through the fuel surface. Table El - Drop through test results with /-Heptane at 20C. Addition Method Single Single Single AVG Net Volume* AFF - Added for Drop Through fpL] 1stDrop 2ndDrop 3rdDrop 4thDrop 5thDrop 60 30 ** 30 30 30 20 35 30 55 45 35 20 50 35 45 28 19 37 40 Random Random Random AVG 70 210 60 60 60 180 55 75 105 115 70 65 55 168 62 *N et V olum e-volum e o f AFFF added after previous drop fell through surface **D ro p fe ll through w ith previous drop Single=solution added to surface at a single location R andom =solution added to surface at random locations 40 15 ** 19 Total Volume Added [pL] 150 170 185 168 310 360 365 345 A d d itio n M ethod S in g le S in g le AVG Table E2 - Drop through test results with Cyclohexane at 20C. Net Volum e* AFFF Added for Drop Through l 5' D ro p 2nd D rop 3rd D rop 4th D rop 160 40 30 20 165 25 20 30 163 33 25 25 uLj 5"1D ro p 25 25 25 Total Volum e Added [pL] 275 265 270 Random Random 390 5 400 * * 35 130 55 5 AVG 395 3 45 68 *Nct V olum e=volum e o f A FF F added after previous drop fe ll through surface **D ro p fe ll through w ith previous drop SingIe=solution added to surface at a single location Random =solution added to surface at random locations 40 40 40 600 500 550 E-4 US00003340 Addition Method Single Single Single AVG Table E3 - Drop through test results with JP-5 at 20C. Net Volume* AFFF Added for Drop Through [llL] lsl Drop 175 200 200 192 2ndDrop 60 80 60 67 3rdDrop 45 40 40 42 4thDrop 95 60 40 65 5thDrop 50 50 50 50 Random 735 ** 15 20 ** Random 650 40 30 ** 85 Random 610 ** 20 55 ** Random 590 15 25 85 115 AVG 646 14 23 40 50 *N e t Volum e=volum e o f AFFF added after previous drop fe ll through surface **D ro p fe ll through w ith previous drop S ingle-solution added to surface at a single location R andom -solution added to surface at random locations Total Volume Added [pL] 425 430 390 415 770 805 685 830 773 The values in Tables E l-3 can be used to determine the minimum amount of solution that must drain from the foam before solution will begin to drop through the surface. Critical values for drop through are provided in Table E4 for fuels at 20C. In general, the amount of solution for initial drop through will be higher than the amount necessary for subsequent drops. Data for JP-5 indicate that the drain rate must initially be higher than 0.0646 kg/(m2 s) for the fuel to not have an effect on the drain rate. After the initial drop falls through the surface, the critical drain rate for no delay in solution drainage decreases to 0.0056 kg/(m2s). Table E4 - Critical AFFF levels to cause drop through different fuel surfaces at 20C. Fuel Type -Heptane -Heptane Cyclohexane Cyclohexane JP-5 JP-5 Addition Method Single Random Single Random Single Random 1st Drop Critical Volume [pL] 45 65 163 395 192 646 Critical Mass per Unit Area [kg/nr] 0.0045 0.0065 0.0163 0.0395 0.0192 0.0646 Single=solution added to surface at a single location Random =solution added to surface at Irandom locations Subsequent Drops Critical Volume [pL] 31 76 27 39 56 32 Critical Mass per Unit Area [kg/m2] 0.0031 0.0076 0.0027 0.0039 0.0056 0.0032 E-5 US00003341 A different behavior was observed when AFFF at 20C was added to fuel at an elevated temperature (66C which is near the boiling point of ?7-Hexane). In these tests, no depressions were observed to form at the fuel surface. Instead, the solution appeared to drop directly through the fuel surface. When the solution drop through the fuel surface, it was not as a drop but appeared to flow through the surface as a slow stream of solution. In tests with JP-5 and Cyclohexane, the solution was observed to spread across the fuel and then fall through the surface. The solution was not observed to spread in tests with n-Heptane, but instead just fell directly through the surface. Similar results were observed when AFFF heated to 66C was added to the fuel surface. E-6 US00003342 APPENDIX F SURFACE TENSION DATA F-l US00003343 A series of tests was performed to quantify the surface tension of various fuels and a single formulation of AFFF (3M 6%), and the interfacial surface tension between the fuels and the AFFF. The fuels evaluated in this test series were Heptane, Cyclohexane, and JP-5. Tests were performed with the solutions at temperatures ranging from 10C - 50C. Solution temperatures were achieved by maintaining the test vessel at a constant temperature. This was done using a hollow Pyrex test vessel that had fluid from a water bath, set a the desired temperature level, continuously flowing through the vessel. Tests were performed at the Naval Research Laboratory (NRL) at the Chesapeake Beach Detachment (CBD) using a Autotensiomat Surface Tension Analyzer, Fisher Model 215. Tests were conducted in accordance to the procedures outlined in ASTM D 1331-89 "Standard Test Method for Surface and Interfacial Tension of Solutions of Surface-Active Agents". A single Platinum-Iridium Ring (5.920 cm diameter, R/r=53.0322) was used in the study Reported values were corrected as specified in ASTM D 1331. Surface tension results for the different solutions are shown in Figure FI at various temperatures. Surface tension levels decreased almost linearly with temperature at a rate similar to that determined by Moran e t al. [16]; however, the magnitude of the surface tension was approximately 5-10% lower than values in Ref. [16], The reason for the discrepancy is unknown. Interfacial surface tension between AFFF and Cyclohexane, and AFFF and JP-5 are shown in Figure F2. For both combinations, interfacial surface tension was measured to remain relatively constant with temperature. Moran e t a l [16] previously reported interfacial surface tension values to decrease at nominally the same rate as surface tension of the hydrocarbon liquid, which is different than the result shown in Fig. F2. The reason for the discrepancy is unknown. F-2 US00003344 Data from Figures FI and F2 were used to determine the spreading coefficient, which is defined for these tests as a net = c r AFFF ~ a fuel ~ I F (F !) where cjnet is the spreading coefficient, Oafff'is the surface tension of the AFFF, cyue, is the surface tension of the fuel, and (Jif is the interfacial surface tension. The spreading coefficient is a measure of the ability of AFFF to spread along the fuel; a spreading coefficient greater than zero indicates AFFF can spread along the fuel surface without dropping through. The spreading coefficient for AFFF on Cyclohexane and JP-5 is shown in Fig. F3 at various temperatures. Temperature was measured to decrease the spreading coefficient by 20-30%, which agrees with the conclusions of Moran e t al. [16] that temperature has only a slight effect on the spreading coefficient. Figure F I - Surface tension of various solutions at different temperatures. F-3 US00003345 6 5- <eD 4~ o - eof Uac>i hCOD t<3:13 CO "to o *<tDz 1- 6% AFFF and Cyclohexane - V - 6% AFFF and JP-5 0 10 20 30 40 50 60 Temperature, [Celsius] Figure F 2 - Interfacial surface tension between fuel and AFFF at different temperatures. Figure F 3- Spreading coefficient of AFFF on fuels at different temperatures. F-4 US00003346 REFERENCES 1. Moran, H.E. Burnett, J.C. and Leonard, J.T., "Suppression of Fuel Evaporation by Aqueous Films of Fluorochemical Surfactant Solutions," NRL Report 7247, Naval Research Laboratory, Washington, D.C. (1971) F-5 US00003347