Document ba06jnqN7j9eJdGv4aQnZNYM3

Heating Ventilating Air Conditioning Guide 1938 The grate area will depend on several factors of which four are very important. First of all, the air temperature at the register for which the plant has been designed must be determined. Usually, this tempera ture is taken at 175 F. Second in importance is the combustion rate, which must always correspond with the register air temperature, as is shown by a set of typical furnace performance curves (Fig. 7) for a cast-iron, circular radiator furnace with a 23 in. diameter grate and 50 in. diameter casing. The third factor is efficiency, which is a function of the com bustion rate, and varies with it as shown by the efficiency curve of Fig. 7. The fourth factor is the heat value per pound of fuel burned, which was 12,790 Btu. This is not shown on the curves since it was constant for all combustion rates. Chapter 19. Gravity Warm Air Furnace Systems of the furnace is 62 per cent. Under this condition the capacity at the furnace bonnet per square foot of grate is 43,200 Btu per hr and per square inch of grate is 300 Btu per hr, the required area of the grate in square inches in this case will be = 0.0042 H. It should be oUU noted that a larger grate area is required if the furnace is to deliver air at a lower register temperature. The typical performance curves shown in Fig. 7 are not applicable to Fig. 6. Arrangement of Cold Air Returns for Six Installations It may be noted from Fig. 7 that for this particular furnace a register temperature of 175 F was accompanied by a combustion rate of approxi mately 7.5 lb per sq ft per hr, a capacity at the bonnet of 152,000 Btu per hr and a furnace efficiency of 58 per cent. Under these conditions the capacity at the bonnet per square foot of grate was equivalent to a value of 52,800 Btu per hr and per square inch of grate was equivalent to 367 Btu per hr. If it is desired to use these curves to select a furnace to deliver air at 175 F register temperature in a house where the total heat loss is H Btu per hour and the loss between the furnace and the registers is 0.25 H Btu per hour, the area of the grate in square inches will be 1.25 H 367 0.0034 H. If, on the other hand, it is desired to select a furnace to deliver air at . 160 F register temperature, the combustion rate is 5.5 lb and the efficiency 384 Fig. 7. Typical Performance Curves for a Warm-Air Furnace and Installation in a Three-Story Ten Leader Plant, Operating on Recirculated Air all furnaces and hence for ordinary design purposes the values recom mended in the Standard Code3 should be used. The equation for a furnace having a ratio of heating surface to grate area of 20 to 1 is equal to: H= G X p X f X Ei X E, X 0.866 144 (7) Standard Code Regulating the Installation of Gravity Warm Air Heating Systems in Residences* This code has been sponsored by the National Warm Air Healing and Air Conditioning Association, the National Association of Sheet Metal Contractors, and the American Society of Heating and Ventilating Engineers. It is recommended that the installation of all gravity warm air heating systems in residences be governed by the provisions of this code, the ninth edition of which may be obtained from the National Warm Air Heating and Air Conditioning Association, 50 W. Broad St., Columbus, Ohio. 385