Document J37BKM9jp7qo1JxQKKm2aadq2

of andAmerican Society Heating Ventilating Engineers Guide, 1930 The quantities of condensate to be handled from direct radiation, directindirect radiation and indirect or fan blast radiation may be estimated as fnllcurc For direct radiation W = 0.3 Rl For direct-indirect radiation W = 0.6 R1 where For indirect radiation W= -- 55.6 X r W = pounds of condensate per hour. R = square feet of radiation. Q = cubic feet of air per minute. T = temperature rise of air in deg. fahr. r = the latent heat of steam in the system in B.t.u. per pound. CONDENSATION PUMPS s Condensation return pumps are generally of two types: (1) automatic pumps and receivers, and (2) continuously operating non-automatic return pumps. These may be of the steam or power driven reciprocating type or motor-driven centrifugal type. Steam and power-driven recip rocating condensation pumps should always be of the automatic type. Table 1. Horizontal Steam Driven Simplex Reciprocating Boiler peed Pumps--150 Lb. Working Pressure Ctunder Sizes Inches Steam Water Stroke m 3, 4 4 5 SX 6 6 .7 8 7 m 8 8 10 12. 12 14 16 16 16 16 20 l Vs tX 1% 1)4 3 3)4 3% 4 4, 5 *X *X 5 5 6 m 8 m 10 9M 10 12 2 1)4 3 6 6 6 8 8 8 8 10 10 10 12 12 12 12 12 16 16 20 20 20 X X X X X X X 1* 1 '1 1 1 1 tX IX tX 2 3 3 3 3 3'A 6bE8 'HES Suction Deliray Capacjtt ih Gallons per Stroke Boiler Horsepower Pomp will Feed AT Moderate Speed X X X 1X 1 1 IX tx ix iX tx ix m 2 2 ix 3X 3X 3X 3X 4 X 1 tx 2 2 2 IX ix IX 3 3X 3X 3X 4 4 5 5 6 8 8 8 8 8 X X X IX ix IX 2 2 2 ix 2X ix ix 3 3 4 4 5 7 '7 7 7 7 0.013 0.020 0.058 0.128 0.184 0.250 0.360 0.435 0.435 0.675 0.688 0.688 0.850 1.02 1.469 2.144 2.611 2.948 4.656 5.441 5.820 6.801 9.794 20 35 60 100 150 200 250 300 350 450 400 450 500 600 .1,000 1,500 1,650 2,000 2,200 2,500 2,400 2,700 .3,500 JThis is greater than the standard 0.25 lb. of condensate per souare foot, to take care of heating-up periods. 310 Chapter 19--Pumps and Traps Automatic Pumps and Receivers The volumetric capacity of receivers for electrically-driven pumps should be not less than twice the maximum minute volumetric flow of conden sation to be handled, measured between the high and low water lines in Table 2. Horizontal Steam Driven Duplex Reciprocating Boiler Feed Pumps--150 Lb. Working Pressure Steam Inches Water Stroke Steam Pipe Sobs Inches Exhaust Suction ' Discharge Gallons Piston orBoiler Horsepower No. Based on 34.5 Lb. Strokes Evaporation-- per No Factor or Sapett Dzs- IN 32 3 4 ix 4 ix ix 4 SX 3X 5 64 6 7 4X 8 7X 4X 10 8 5 10 10 6 10 12 7 12 Vs X tx 1 X X X x 2 2 tX tX 1 1 tx ix I3X tX 2 tx m 4 3 IX 2 4 3 ix 2 4 3 2 IX 5 4 IX 3 6 5 0.04 0.08 0.103 0.208 0.33 0.5S 0,69 0.85 1.22 1.99 83 150 180 330 470 760 840 1,100 1,600 2,300 70 5.6 60 9.6 60 12.0 50 20.0 50 33.0 50 55.0 40 55.2 40 68.0 40 97.6 35 139.3 Table 3 Horizontal Duplex Power Driven Boiler Feed Pumps 150 Lb. Working Pressure Ctlendeb Maximum Sizes, Inches R.P.M. Crank Shaft Diam. Stroke Dis placement Gallons Brake* Boiler Gallons PER Horsepower Required Horsepower Served Without Minute Revolution 150 LB. Pressure Satett Factor Pipe Sizes Inches Pullet Sizes Inches and R. P. M. Saction Disch. Diam. Face R.P. M. IX 4 3- 4 3X 6 46 m8 5 10 sx 10 6 10 60 60 50 55 45 40 40 40 0.41 0.48 0.99 1.32 2.19 3.40 4.11 4.88 24 2.1 28 2.46 59 5.2 79 6.96 110 9.65 136 11.97 164 14.45 195 17.17 330 IX 2 tiX IX 390 IX 2 14X IX 820 3 2 25 5 1,010 4 3 25 5 1,520 4 3 30 5 1,890 4 3 37 8 2,280 5 4 37 8 2,700 5 4 37 8 .Figure pump efficiency at 50 per cent to arrive at motor horsepower to be used. 300 300 250 275 225 200 200 200 the receiver. For steam-driven pumps and receivers, the capacity may be less than for electrically-driven pumps. The piston speed in feet per minute should not be more than 10 times the square root of the number of inches in the length of stroke. The volumetric displacement rate of water pistons should not beJess than three times the maximum volumetric rate of the flow of condensate to be handled. The normal capacity of centrifugal pumps should not be less than twice the maximum rate of flow of the condensate to be handled. 311