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HEATING VENTILATING AIR CONDITIONING GUIDE 1941
The left hand member of Equation 13 represents the total amount of
available draft created by the pressure transformer, that is, the natural draft chimney, Venturi chimney, or fan, and is equal to the theoretical intensity less the internal losses incidental to operation. The right hand
member represents the sum of all of the various losses of draft throughout the entire boiler plant installation outside of the pressure transformer itself. The left hand member expresses the available intensity and is analogous to the head developed by a centrifugal pump in a water works system, while the right hand member expresses the required draft in.
. Table 1. Recommended Minimum Chimney Sizes for Heating Boilers and Furnaces8
| Steam
Warm Air
Capacity m Sq In. op LsADca
Pipa
Boiles Capacity orSqRPadti
ation
Hot Rbatbb 8q Ft or Radi
ation
Nominal DiuenFms Clat Lama in Inches
Rectangulab Flub
Actual aside Dimensions of FLiirneinCglay In Laches
Actual Area 8q In.
Round Flub
Inside Diam eter of lining Inches
Actual Area Sq In.
790 590 1000 690
900
900 1,100 1,700 1,940 2,130 2,480 3,150 4,300 4,600 5,000 5,570 5,580 6,980
7,270 8,700 9,380
10,150 . 1 10,470
973 1,140 1,490 1,490 1,820 2,800 3,200 3,520 4)090 5,200
7,100 7,590 8,250 9,190 9,200 11,500 12,000 14,400 15,500 16,750 17,250
834x13 7 xll^ 81 13x13 lltixllti 127
8M*18 6^x16^ 110 13x18 ilJ*xl6J* 183 18x18 15^x15^ 248 20x20 17Jixl7M 298
20x24 24x24
17x21 21x21 24x246
357 441
576
24 x 28> 28 x 28b
30 x 30b 28 x 32b
672 784
900 896
10 79 12 113 15 177
18 254 20 314
22 380 24 452
27 573
He:gt w Ft Abotb
GtUTT
35
40
45 50
55 60 65
laUoi
"ofth19M)S H'V`E' ^ f Minimum Requirements for the Heating and Veatt
^Dimensions are for tlnlmed rectangular flues.
tensity and is analogous to the total dynamic head in a water works system. For a general circulation of gases
where
Da. = Dr
Da = available draft intensity, inches of water. Dr = required draft, inches of water.
(14)
The draft loss through thefuel bed (/if) , or the amount of draft required to effect a given or required rate of combustion, varies between wide limits and represents the greater portion of the required draft. In coal-fired
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CHAPTER 8, CHIMNEYS AND DRAFT CALCULATIONS
nations, the draft loss through the fuel bed is dependent upon the ^fwrine factors: (1) character and condition of the fuel, clean or dirty; ml nercentage of ash in the fuel; (3) volume of interstices in the fuel bed, * rseness of fuel; (4) thickness of the fuel bed, rate of combustion; ~?^ype 0f grate or stoker used; (6) efficiency of combustion. ' L js a certain intensity of draft with which the best results will be
htained for every kind of coal and rate of combustion. Fig. 7 gives the tensity of draft, or the vacuum in the combustion chamber required to burn various kinds of coal at various rates of combustion. Expressed in
ther words, these curves represent the amount of draft required to force ihe necessary amount of air through the fuel bed in order to effect various rates of combustion. It will be noted that the amount of draft increases
- .u nprrentaee of volatile matter diminishes, being comparatively low
for the lower grades of bituminous coals and highest for the high grades and small sizes of anthracites. Also, when the interstices of the coal are large and the particles are not well broken up, as with bituminous coals,much less draft is required than when the particles are small and are well broken up, as with bituminous slack and the small sizes of anthracites. In general, the draft loss through the fuel bed increases as: (1) the per centage of volatile matter diminishes; (2) the percentage of fixed carbon increases; (3) the thickness of the bed increases; (4) the percentage of ash increases; (5) the volume of the interstices diminishes.
In making the preliminary assumptions for the draft loss through the fuel bed, due allowances should be made for a possible future change in the grade of fuel to be burned and also in the rate of combustion. A value' should be selected for this loss which will represent not only the highest rate of combustion which will be encountered, but also the grade of coal which has the greatest resistance through the fuel bed and which may be burned at a later date.
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