Document e1vGkBGY7pJKmyD8rxajZ0ka4
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CHAPTER 2
1956 Guide
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Thermal conductance per unit'area, Unit conductance: heat transferred per (unit time) (unit area) (degree)....................................................... . --.......... C
r 1 _ q -,k
' A RA A((i -- (*) L
Thermal conductivity: heat transferred per (unit time) (unit areaj (degree per unit length)............. ................................. ..... ....................................................^
`-sis
L
Surface coefficient of heat transfer, Film coefficient of heat transfer, Individual coefficient of heat transfer: heat transferred per (unit time) (unit area) (degree)..................................................................................................................... /
g A /=
U-tt
(In general / is not equal to.k/L, where L is the actual thickness of the fluid film.) Overall coefficient of heat transfer, Thermal transmittance per unit area: heat .
transferred per (unit time) (unit area) (degree overall).................................... U
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Thermal transmission (heat transferred per unit time)....................
Q T *
Thermal resistance (degree per unit of heat transferred per unit time)
9 R
-- ** ~ k ^ q kA
Thermal resistivity............. .................. ........ ...
j......... .............. .............. V*
Vaporization values at constant pressure, DifferericesTbetween values for satu
rated vapor and saturated liquid at the same pressure....................Subscript fg
Velocity...................... .................................................. .............................................. V
Viscosity, absolute........ ................... .............................................. ............... -- m
Viscosity, kinematic__ ..................................................................... ........... .p/p
Volume (total)............. .............. ..................................... ;........................... ..........V. Volume per unit time,' Rate at which quantity of material passes through a
machine, Quantity of heat per unit time, Quantity of heat per unit weight..'. Weight of a major item, Total weight......................... ......... ....................... ....... Weight rate, Weight per unit of power, Weight per unit of time.............. ............
Work (total).............................. ;.............................................................................
THE GREEK ALPHABET
A a Alpha B/3 Beta r-r Gamma A S Delta
E< Epsilon Zf Zeta H, Eta
e&e Theta
I i Iota K k Kappa A X Lambda M ii Mu N v Nu EJ Xi O o Omicron Hit Pi
P p Rho 2 a i Sigma T t Tau T u Upsilon
$ <p <f> Phi X X Chi
9.#. Psi . Qa> Omega
.
Abbreviations, Symbols, Conversion Factors
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CONVERSION EQUATIONS5
Heat, Power and Work 1 ton refrigeration Latent heat of ice 1 Btu
1 Int. watthour
1 Int. kilowatthour
1 Int. kilowatt (1000 watts) 1000 I.T. calories! 1 I.T. Kilocalorie/
f 12,000 Btu per hour \ 200 Btu per minute 143.4 Btu.per pound
778.3 ft-lb 0.2930 Int. whr 252.0 I.T. calorie
[ 2656 ft-lb 3.413 Btu
] 3600 Int. joules [ 860 I.T. calories
f 3,413 Btu | 3.517 lb water evaporated from { and at 212 F
f 1.341 hp \ 56.88 Btu per minute [ 44,267 ft-lb per minute
[ 3.968 Btu { 3088 ft-lb [ 1.1628 Int. whr
0.7455 Int. kw 42.40 Btu per minute 33,000 ft-lb per minute 550 ft-lb per second
33,475 Btu per hour 9.809 Int. kw