Document 3NdQG42XDmJ7emYe0p8wownLa
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CHAPTER 5
; L952 Guide
;Tablr 2^-Approximate Unit Conductances fob Thermal Convection < fob Several Flow Systems {Concluded)
Case
1 Heat Transfer Equation* and itb'Limits of Application
Refer* encb
' Forced Convection
NOMENCLATURE AND DIMENSIONS FOR TABLE 2
cp = heat capacity at constant pressure, Btu per (pound) (Fahrenheit degree). D = cylinder diameter, feet. / = subscript denoting film.
Heat Transfer
95
g = body force per unit mass, feet per hour per hour. (For static system on
earth, g = 32.2 X 3600* feet per hour per hour.)
G = 3600 Ump = mass flow per unit'cross-sectional area normal to flow, pounds
per (hour) (square foot of flow cross-section).
Not = Grashof modulus, dimensionless (Nat = D'p'flCiig/p1).
he = average unit thermal convective conductance from the leading edge of
surface to the position i, Btu per (hour) (square foot) (Fahrenheit degree).
AC1 = local unit thermal convective conductance, at the position x from the
leading edge of surface, Btu per (hour) (square foot) (Fahrenheit degree).
k = thermal conductivity, Btu per (hour) (square foot) (Fahrenheit degree
per foot thickness).
- ........
I = a dimension of the system, feet.
.
m = a subscript denoting mean.
P = pressure, atmospheres.
Pa = pressure (atmospheric) atmospheres.
t = temperature, Fahrenheit.
T = temperature, Fahrenheit, absolute.
i
u -- fluid, velocity, feet per second. !
: ' 1\
V = volume, cubic feet.
x = a dimension of the system, feet.
p = coefficient of cubical expansion (p =: 1 dV for perfect gases fi = 1/T.
At'= 'difference between wall and .fluid, temperatures, Fahrenheit degrees.
It = fluid viscosity, pounds,per (hour) (foot). ...
..
p = density, pounds per cubic foot.
.
> = infinity, referring the quantity to a point not directly affected by the
phenomenon in question.
Table 3. . Radiation Factors or Emissivities, c* For the determination of factor Fe in Equation 3" '
Class
Surfaces
Fraction of Black-Body
. ,Radiation ; r .; At 50-100 F At 1000 F
Absorptivity
. (FOR
:
Solar"'
Radiation
1 . A 8mall hole in a large beat, sphere, furnace, or enclosure............... ........................................ 0.97 to 6.99
2 -Black non-metallic surfaces such as* asphalt, car- '
3 Red brick and tile, concrete and stone, rusty steel
4
and iron, dark paints (red. brown, green, etc.).. -0.85 to 0.95 Yellow and buff brick and stone*, firebrick, fire
.5
clay.................................................................. 0.85 to 0.95 White or light-cream brick, tile, paintor paper.
plaster, whitewash::.......... v..........
........ 0.85 to 0.95
6 0.90 to 0.95
7 Bright aluminum paint; gilt or bronze paint__ 0.40 to 0.60
8 Dull brass, copper, or aluminum; galvanized
steel; polished iron........................................... 0.20 to 0.30
9
10
Polished brass, copper, monel metal................... 0.02 to 0.05 Highly polished aluminum, tin plate, nickel,
enromium..................................................
0.02 to 0.04
- ,, . 0.97 to 0.99. 0.97 to 0.99 ...
0.90 to 6.98 . 0-.85to0.98 :*t
0.75 to 0.90 0.65 to 0.80
0.70 to 0.85 0.50 to 0.70
0.60 to 0.75
0.30 toO.50 Transparent* 0.30 to 0.50
0.30 to 0.50 0.40 to 0.65, 0.05 to 0.15 ;0.30 to 0.50'
0.05 to 0.10 0.10 to 0.40
* Emissivities of other materials may be found in Reference 4. s Reflects about 8 percent.
fourth powers of the absolute surface temperatures (7Y -- 7V). The proportionahty factor (oFaFe) may be conveniently separated into three parts (excepting in some problems involving interreflections, where it is
not possible to'divide,the product (FaFe) into separate terms):
v =?. the Stefan-Boltzmann radiation constant = 1730 X 10-11 Btu per (hour) ' (square foot) (Fahrenheit degree absolute temperature to the fourth power). Fa =' the geometrical factor which is dimensionless and SI. This factor accounts'
for the shape and relative position of the two surfaces. The value of Fa = 1 may be used in the cases of large parallel planes, long concentric cylinders or smaller bodies in large enclosures. ,= the emissivity factor which is also' dimensionless and S 1. This factor ac counts for the absorption add emission characteristics of the surfaces for the