Document Jv38Xg8Jxow55z4J31BvrKXrZ

Heating Ventilating Air Conditioning Guide 1939 Table 2. kConductivities ( ) and Conductances (C) of Building Materials and Insulators3--Continued The coefficients are expressed in Btn per hour per square foot per degree Fahrenheit per 1 in. thickness unless otherwise indicated. Material Description s !I -K -|o oD ii 11 is DD t 8 o I s iIs e g la 1 < AIR SPACES FACED WITH BRIGHT ALUMINUM FOIL Air space, faced one side with bright alumi num foil, over 5^-iu. wide Air space, faced one side with bright alumi num foil, H-in- wide__________ Air space, faced both sides with bright aluminum foil, over wide Air sps^e, faced both sides with bright aluminum foil. H-in. wide----------------------- Airspace divided in two with single curtain of bright aluminum foil (both sides bright) each space over Ji-io. wide each space H*tn. wide--- ------------------ ------ Air space with multiple' curtains of bright aluminum foil, bright on both sides, curtains mare than &-in. apart, air circu lation between spaces prevented: 2 curtains, forming 3 spaces,_: 3 curtains, forming 4 spaces 4 curtains, forming 5 spaces_________ ____ __ -- -- --" ,, , -- 50 50 50 50 ' SO 50 50 50 50 0.46f* 0.62f 0.41f 0^571 0.23t* 0.31f \ 0.I5P o.iit* 0.09P 2.17 1.61 2.44 1775 4.35 3.23 6.78 9.22 11.C6 (4) (4) (4) (4) (4) (4) (41 4) ( SPACES FACED WITH NON- Fabric with non-metallic reflective surface METALLIC REFLECTIVE () in. thick) placed in center of a 13$ in. SURFACE air apa>__ .................... ....... -- 70 0.33f 3.03 (3) Core of fiber board coated two sides with non-metallic reflective surface (H in- thick) placed in space having approxi mately in. air space on each side__ __ 23.4 70 0.27t 3.70 (3) Fiber board coated one side with non- metallic reflective surface (% in. thick) placed in space having approximately in. air space on each side----r--.____ -- 75 0.49f 2.04 (3) Air space divided in two with fabric faced __both sides with non-metallic reflective surface, each space over W-in. wide----------- 40 0.33f 3.03 (4) Air space over 9^-in. wide faced one side with noD-mctaUic reflective surface -- 40 0.67t 1.49* (4) WOODS (Acrora Grain) Balsa California Redwood.. 0% mois Douglas Fm_, Eastern Hemlock-- Hard Maple.. 0% moisture-- 0% 16% 16% 0% mois 0% 16% 16% 0%e 0% 8% 8% 16% 16% 20.0 90 0.58 1.72 (1) 8.8 90 0.38 2.63/ U) 7.3 90 0.33 3.03 " 22.0 75 0.66 1.53 (4) 28.0 75 0.70 .1.43 (4) 22.0 75 0.70 . 1.43 (4) 28.0 75 0.75 1.33 (4) 22.0 75 0.74 1.35 (4) 28.0 75 0.80 1.25 (4) 28.7 86 0.67 26.0 75 0.61. 1.49 1.64 ((41)) 34.0 7S 0.67 1.49 (4) 26.0 75 0.66 1.52 (4) 34.0 75 0.75 1.33 (41 26.0 75 0.76 1.32 (4) 34.0 75 0.82 1.22 (4) 22.0 75 0.60 1.67 !4> 30.0 75 0.76 1.32 4) 22.0 75 0.63 1.59 (4) 30.0 75 0.81 1.23 (4) 22.0 75 0.67 1.49 (4) 30.0 75 0.85 1.18 (4) 40.0 75 1.01 0.99 (4) 46.0 75 1.05 0.95 (4) 40.0 75 1.08 0.93 (4) 46.0 75 1.13 0.89 (4) 40.0 75 1.15 0.87 (4) 46.0 75 1.21 0.83 (4) For notes see Page 95. Chapter 5. Heat Transmission Coefficients and Tables Table 2. (C)Conductivities (it) and Conductances of Building Materials and Insulators3--Concluded The coef-fic.ie._nftes aarree eexxpyressed in Btu puenr/hMo5uroPtheerrwsqisueareinfdoiocat tPeedr. degree Fahrenheit per l in. thickness D ensitt (Lb per Co Ft) | A uthority j Material Description WOODS--Continued Longleap Yellow Pink- MahogantMa Maple or Oak--------Nobwat Pinsl--------- Red CtPRESS-- Red Oax_ 0% 8% 8% 16% 16% 0% Q% 8% 16% 0% 8% 8% 16% 0% 0% 8% 8% SaoBTLEAt Yellow Pine... gf 8% 8% 16% 16% Sf 8% 16^ Virginia PinbWest Coast Hemlock-- White PineYellow Pint Yellow Pine or Fib__ 16% 0% 0% 8% 8% 1166g% 0% 0% 8% 8% 16% 16% 0% 0% 8% 8% 16% 16% a a a a a a a a a a * a a a a a a o a a a a a a a a For notes see Page 95. , s 3g la S ej le PD OP ZZ oo oo g "jT iSS s1 30.0 75 0.76 1.32 4> 40.0 75 0.86 1.16 (> 30.0 75 0.83 1.21 (4) 40.0 75 0.95 1.05 (4) 30.0 75 0.89 1.12 (4) 40.0 75 1.03 0.97 4) 34.3 86 0.90 1.11 U 44.3 86 1.10 0.91 (1) 1.15* 0.87 22.0 75 0.62 1.61 (4) 32.0 75 0.74 1.35 (4) 22.0 75 0.68 1.47 (4) 32.0 75 0.83 1.21 (4) 22.0 75 0.74 1.35 4) 32.0 75 0.91 22.0 75 0.67 1.10 1.49 (4) to 32.0 75 0.79 1.27 (4) 22.0 75 0.71 1.41 4) 32.0 75 0.84 1.19 (4) 22.0 75 0.74 1.35 (4) 32.0 75 0.90 38.0 75 0.98 1.11 1.02 4) (4) 48.0 7S 1.18 0.85 <41 38.0 75 1.03 0.97 (4) 48.0 75 1.24 0.81 (4) 38.0 48.0 75 75 1.07 1.29 U)0.94 0.78 4 26.0 75 0.74 36.0 75 0.91 26.0 75 0.79 1.35 1.10 1.27 54) 4> (4) 36.0 75 0.97 1.03 (4) 26.0 75 0.84 36.0 75 1.04 to1.19 0.96 <41 *28.0 75 0.73 34.0 75 0.88 1.37 1.14 (4) (4) 28.0 75 0.77 1.30 (4) 34.0 75 0.93 1.08 (4) 28.0 75 0.81 1.24 (4) .34.0 75 0.97 36.0 75 0.89 1.03 1.12 (4) (4) 42.0 75 0.95 1.05 (4) 36.0 75 0.96 1.04 (4) 42.0 36.0 75 75 1.02 1.01 0.98 0.99 (t4o) 42.0 75 1.09 22.0 75 0.54 to0.92 1.85 (4) 28.0 75 0.64 1.56 (4) 22.0 75 0.59 1.70 (4) 28.0 75 0.71 1.41 4) 22.0 75 0.65 1.54 4) 28.0 75 0.78 1.28 4) 34.3 86 0.96 1.04 u> 22.0 75 0.68 1.47 (4) 30.0 75 0.79 1.27 (4) 22.0 75 0.73 1.37 (4) 30.0 75 0.85 1.18 (4) 22.0 75 0.78 1.28 4) 30.0 75 0.91 1.10 (4) 31.2 86 0.78 __ 1.00 1.28 1.00 (3) -- -- 0.80* 1.25 101