Document dYjVrnoyLJNze1NNp8E2KRVJB
American Society of Heating and Ventilating Engineers Guide, 1937
HEATING EFFECT
For several years the heating effect of radiators has been considered by engineers in order to use it for the rating of radiators and in the design of heating systems. Heating effect is the useful output of a radiator, in the comfort zone of a room, as related to the total input of the radiator3.
I^Cotd room temp in deg F
-22 x -22 z -2.7 s
-23 m
552 lb Test R-E2,5"tube rad
5.62 lb Test R-E6I,3*tube rad 5.42 lb Test R-E10,1-tube panel rad 550 (b Test R-2c, (Bui 223) wad rad
I 2 3 4 5 6 78
| Net lb of steam condensed per hour
23 4 567 HEIGHT ABOVE FLOOR IN FEET
Fig. 1. Room Temperature Gradients and Steam Condensing Rates for Four Types of Cast-Iron Radiators with a Common Temperature at the 60-In. Level
Note that the steam condensations are practically the same for all four radiators when the same air temperature of 69 F is maintained at the 60-in. level.
-Cold room temp
6.68 lb Test R-E56.5-tube rad. 6.48 lb Test R-E20.3-tube rad. 6.12 lb Test R-E58, T-tube panel rad. 55.0 lb Test R-2c, (Bui 223) wall rad. 7
Chapter 30--Radiators and Gravity Convectors
1 The heating effect of a radiator cannot be judged solely by the amount of steam condensed within the radiator.
2 Smaller floor-to-ceiling temperature differentials can be maintained with long, low, thin direct radiators, than is possible with high, direct radiators.
3 The larger portion of. the floor-to-ceiling temperature differential in a room of average ceiling height heated with direct radiators occurs between the floor and the
breathing level.
4 The comfort level (approximately 2 ft-6 in. above floor) is below the breathing line
levei (approximately 5 ft-0 in. above floor), and temperatures taken at the breathing line may not be indicative of the actual heating effect of a radiator in the room. The comfort-indicating temperature should be taken below the breathing line level.
5. High column radiators placed at the sides of window openings do not produce as
comfortable heating effects as long, low, direct radiators placed beneath window
openings5.
___
HEATING UP THE RADIATOR
The maximum condensation occurs in a heating unit when the steam is first turned on. Fig. 3 shows a typical curve for the condensation rate in pounds per hour for the time elapsing after steam is turned into a castiron radiator. The data are from tests on old style column type radiators.
TIME ELAPSED AFTER STEAM TURNED INTO RADIATOR. MINUTES
Fig. 3. Chart Showing the Steam Demand Rate for Heating Up a Cast-Iron Radiator with Free Air Venting and Ample Steam Supply
In practice the rate of steam supply to the heating unit while heating up
u HEIGHT ABOVE ODOR IN FEET Fig. 2. Room Temperature Gradients and Steam Condensing Rates for Four Types of Cast-Iron Radiators with a Common Temperature at the 30-In. Level
is frequently retarded by controlled elimination of air through air valves or traps. Automatic control valves may also retard the supply of steam.
Note that the steam condensations are different for all four radiators when the same air temperature of 68 F is maintained at the 80-in. level.
ENCLOSED RADIATORS
The results of tests conducted at the University of Illinois are shown in Figs. 1 and 24. For the four types of radiators shown, the following con clusions are given:
*The Heating Effect of Radiators, by Dr. Charles Brabbee (A.S.H.V.E. Transactions, Vol. 33, 1927. p. 33). The Application of the Eupatheoscope for Measuring the Performance of Direct Radiatorsand Con vectors in Terms of Equivalent Temperature, by A. C. Willard, A. P. Kratz and M. K. Fahnestock (A.S.H. V.E. Transactions, Vol. 39, 1933).
Steam Condensation an Inverse Index of Heating Effect, by A. P. Kratz and M. K. Fahnestock (A.S.H.V.E. Transactions, Vol. 37, 1931).
536
The general effect of an enclosure placed about a direct radiator is to restrict the air flow, diminish the radiation and, when properly designed, improve the heating effect. Recent investigations6 indicate that in the design of the enclosure three things should be considered:
`Effect of Two Types of Cast Iron Steam Radiators in Room Heating, by A. C. Willard and M. K. Fahnestock (Heating, Piping and Air Conditioning, March, 1930).
`University of Illinois Engineering Experiment Station Bulletins No. 192 and 223, and Investigation of Seating Rooms with Direct Steam Radiators Equipped with Enclosures and Shields, by A. C. Willard. A- P- Kratz. M. K. Fahnestock and S. Konzo (A.S.H.V.E. Transactions. Vol. 35. 1929).
537
-i