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T A B LE 21. HEAT. E M IT T E D BY DIRECT R A D IA T IO N --CONVERSION FACTORS These conversion factors m ultiplied by the heat loss from any radiator, operating under the indicated conditions, give the heat loss by the same radiator operating at 215 deg. fahr. in a room at 70 deg. fahr.
Research Laboratory Standard Data American Society of Heating and Ventilating Engineers
Result of Cooperative Work With U. S. Bureau of Mines Experiment Station, Pittsburgh, Copyright 1921
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' AMERICAN SOCIETYOF HEMNG &
YENTILAIIN6ENGINEERS 6DIDIEI23;
RADIATION REQUIRED FOR VARIOUS ROOM TEMPERATURES
The following table from The Establishment of Standard Methods of Proportioning Direct Radiation, by James A. Donnelly (Transactions,
Vol. 21, p. 535) gives the proportionate heat losses from buildings, the proportionate transmission from direct radiators, and the propor tionate radiation required (with steam at 210 deg.) for various room temperatures, when the outside temperature is zero:
TABLE 22. EFFECT OF ROOM TEMPERATURE ON HEAT LOSS AND SIZE OF RADIATOR
Room Temperature
Proportionate Loss IN B.t.u.
Difference in Temperature Between Radia tor and Room
Proportionate Transmission
in B.t.u.
Room Temperature
Proportionate Surface
Required Sq. Ft.
35 40
45 50
55 60 65
70f 75 80 85 90
95 100
105 110
115 120
0.50 0.57 0.64 0.71
0.79 0.86
0.93. l.OOf 1:07
1.14 1.21
1.29 1.36 1.43 1.50 1.57 1.64
1.71
175 170
165 160 155 150
145 140f
135 130 125 120
115 110 105 100
95 90
1.34 1.29 1.24 1.19 1.14 1.09 1.05
l.OOf 0.95 0.91 0.87 . 0.82
0.78 0.74 0.70 0.66 0.62 0.58
35 40
45 50 55 60
65 70f
75 80
85 90
95 100 105 110 115 120.
0.37
0.44 0.52
0.60 0.69 0.78
0.89 l.OOf 1.12
1.26 1.40 1.56 1.74
1.93 2.15 2.39
2.66 2.95
fStandard Conditions.
Assuming that. the rate of heat loss from a building varies
directly with the difference be tween the outside temperature
and the building temperature, and considering the heat loss
for zero outside, 70 deg. inside, as the standard, or 100 per cent;
the second column shows the
proportionate loss of heat from a building when the outside
temperature is zero, and the inride temperature is.as given in the first column.
Assuming that the rate of transmission from a direct radi ator to the air of a building is in. proportion to their difference in temperature, with a variation in the rate of 'transmission of 2 per cent, greater or less, for each 10 deg. increase or decrease in their temperature difference, and considering 140 deg. differ ence in temperature (steam 210 deg., building 70 deg.) as standard, or 100 per cent trans mission, the second column shows the proportionate trans mission when the .difference in temperature is as given in the first column.
Assuming that under stand ard conditions of outside tem perature zero, building tempera ture 70 deg., and radiator tem perature 210 deg. (or 140 deg. difference between the radiator and room) the amount of radia tion necessary is 100 per cent, the proportionate amounts of radiation given in the second column are those necessary to
heat a building to the tempera
tures given in the first column,
when the outside temperature is zero.
Note.--The amount of surface required for heating is always obtained by dividing the heat loss from the building by the amount of heat transmitted per square foot of radiation. Therefore, as may be seen from the above tables, the proportionate amount of surface required for heating is obtained by dividing ethaechpcraospeo. rtionate heat loss from the building by the por*pbrtion^te transmission of the radiator, in
The preceding table may be used to find the proportionate amount of radiation necessary to heat a room to any desired inside temperature, other than 70 deg., when the outside minimum temperature is other than zero, and-with a radiator temperature other than standard. Find the
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