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CHAPTER 19 '
J : 1949 Giiide'
Equations 6, 7 and 8 can of course be simplified if values .are .assumedfor some of the factors in it. Some typical figures for boiler plants are:.
Average chimney gas temperature 500 F.................................TQ = 960 F absolute Average atmospheric temperature 62 F.......................................T,, = 522 F absolute Average coefficient of friction 0.016.......................................... / = 0.016 Average chimney, gas density, 0 F, 1 Atmosphere................ W9 -- 0.09 lb per cubic foot Barometer reading, sea level......... .................. ................ B0 = 29.92 in. Hg
Height of Chimney, ft.
Chimneys and Draft Calculations
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FACTORS AFFECTING REQUIRED DRAFT
The. foregoing considerations deal with chimney size selection when the required draft and flue gas volume and temperature are known. The required draft is, of course, equal to the sum of all the resistances to gas . flow from the ash pit door to and including the chimney connection.
. Fig. 4 presents information on the fuel-bed draft loss for various kinds of coal burned at different rates and rough generalizations can be given for the losses in the flue passages of boiler or furnace, but, on account of the great differences in such devices, more reliable data on their flue gas volume temperature and flue resistance should be obtained for design purposes from their respective manufacturers.
Flue gases encounter resistance to flow in breechings or smoke pipes and.' this can probably be treated with sufficient accuracy by means of the
Diameter values also for gas temperatures of 400, 500 and 600 F.
Fig. 3. Economical Chimney Sizes
When these values are substituted in Equations 7 and 6 respectively, the results are:
F,, = 13.71F1'1 (9)
D = 1.5WTM (10)
H = 190A?' (U>
Fig. 3 gives the economical chimney sizes for various amounts jpf gases
flowing and for required draft intensities computed from Equations 9;
10 and 11. They are based on the operating factors used in reducing Equa
tions 6, 7 and 8 .to their simpler form. The sizes shown by the curves in
the chart should be used for general operating conditions only, or where
the required data necessary for an exact determination are difficult or im
possible to secure. Whenever it is possible to secure accurate data, or the
anticipated operating conditions are fairly well known, the required size
should be determined from Equations 6, 7 and 8..
,
POUNDS OF COAL BURNED PER SQ FT OF GRATE SURFACE PER HOUR
Fig. 4. Draft Required at Different Rates of Combustion for Various Kinds of Coal
method used for air ducts. (See Chapter 41.) The friction in straight ducts can be,estimated by means of the last terms of Equations 2 and 3.
Also, the temperature of flue gases falls during passage through breech ings or flue pipes. For uninsulated surfaces this probably can be ade-' quately estimated by assuming a loss of heat from the flue gas of 3 Btu per hour per square foot for each Fahrenheit degree temperature difference between the gases and surrounding air.
DOMESTIC CHIMNEYS
The height of a chimney for a residence or apartment is generally limited by the height of the building since it is desirable to have the chimney architecturally congruous with the building. The height desirable from an architectural viewpoint and the location of the chimney may be dis advantageous to the operation of the boiler or furnace and it is therefore ' important that the manufacturer of the fuel burning appliance to be in stalled be consulted in regard to the adequacy of the chimney. A chimney in order to provide satisfactory performance must have adequate heigltl