· / = 1bbl x 31 gal/bbl x 834 lb/ Gal x 970 / Lb *Wort is the liquid extracted from the mashing process during the brewing of beer Bbl = Barrel Additional considerations Part of the calculation is whether the -consuming components will be operated separately or simultaneously as this affects the and pipe

Steam is formed at 212 F or 100 C The only way for steam to be hotter than that is if it is under pressure Residential steam boilers are designed to build little to no pressure so 212 F would be the temperatureThis boiler has an input of 160000 BTU's and an output of 98000 BTU's and that would be in the form of 408 Square feet of steam

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23 Jan 2017 horsepower is a capacity to deliver to a engine and is not the same of power as the 550 ft-lb/s This original definition is equivalent to a heat output of 33485 / READ MORE

1 (): The energy rate needed to evaporate 345lb of water at 212 °F (100 °C) in one Equal to 33475 /h Approximately 9810657 x 10 3 A is more than 13 times larger than mechanical (~engine output) 1 (International Table) per :

[ Blowdown Energy Flow = 328 = 3435 /lbm * 09 klb/] Step 4: Determine Energy Energy = Energy Flow + Blowdown Energy Flow - Feedwater Energy Flow [ Energy (Flow) = 32787 = 38884 + 328 - 6425 ] Step 5: Determine Fuel Energy Fuel Energy =

load - The horsepower lbs of per or is the rating indicating the maximum capacity of a When a operates at its maximum rated capacity it is referred to as maximum load If the load varies from to it operates at a varying loadLoad and load variations can influence the amount of chemicals required for treatment and the treatment controls required

A boilers capacity is usually expressed as kBtu/hour (1000 Btu/hour) and can be calculated as W = (hg - hf) m (1) where W = boiler capacity (Btu/h kW) hg = enthalpy steam (Btu/lb kJ/kg) hf = enthalpy condensate (Btu/lb kJ/kg) m = evaporated (lb/h kg/s)

[ Blowdown Energy Flow = 387 = 2573 btu/lbm * 14 klb/hr] Step 4: Determine Boiler Energy Boiler Energy = Steam Energy Flow + Blowdown Energy Flow - Feedwater Energy Flow [ Boiler Energy (Flow) = 42039 = 48049 + 387 - 6398 ] Step 5: Determine Fuel Energy Fuel Energy = Boiler Energy / Combustion Efficiency

If it REALLY is only 280 SF (67200 BTU/hr) net output (89376 BTU/hr gross output w/ 133 steam pick up factor) about 112000 BTU/hr input than either: 1 There's less than 343 SF of connected radiation (eg metallic painted radiators full of dust under radiator covers) 2

Knight® XL Commercial Condensing Boiler Natural Gas Fuel 100000 - 500000 Input 467000 Output BTU/HR BTU Rating Voltage Rating: 120 VAC At 60 HZ 1 PH Phase Material: Stainless Steel Heat Exchanger Thermal Efficiency: 94% Ignition Type: Direct Spark Maximum Pressure: 160 PSI 1 IN Gas Connection Water Connection: 1-1/2 IN 4 IN Air Inlet 4 IN Vent Size 42-1/2 IN Height 15-1/2 IN Width

This is the ratio of output divided by input on a particular This includes all the heat loss (eg radiation and convection losses) from a and is typically used in a manufacturer's catalogue Fuel-to- efficiency is a readily verifiable number and is often used in efficiency guarantees by various manufacturers

Knight® XL Commercial Condensing Natural Gas Fuel 100000 - 500000 Input 467000 Output / Rating Voltage Rating: 120 VAC At 60 HZ 1 PH Phase Material: Stainless Steel Heat Exchanger Thermal Efficiency: 94% Ignition Type: Direct Spark Maximum Pressure: 160 PSI 1 IN Gas Connection Water Connection: 1-1/2 IN 4 IN Air Inlet 4 IN Vent 42-1/2 IN Height 15-1/2 IN

· Now for your boiler size: Q = mCdT = 200 gal * 8345 lbs * (1) * (212-60) = 253688 BTU/hr and since you are using 10-12 psig (from steam tables the latent heat is 950 BTU/lb) Q = 253688 / 950 = 26704 lbs/hr Q = 26704 / 345 = 775 BHP

· Determine the heat input per of time by multiplying the flow by the heat input (11340kg/ x 12033 /lb) which is 30083500 / Convert the heat input from the flow into a of power in megawatts This is done by using the conversion 1 /

Rate of Combustion for Gaseous or Liquid Fuels A scotch marine boiler has a furnace volume of if 38252 cu ft of natural gas is burned per hour and each contains 1100 Btu what is the rate of combustion? RC = H / (Vf * t) Return Condensate Percentage in Feedwater

Descriptions; 1 (): The energy rate needed to evaporate 345lb of water at 212 °F (100 °C) in one Equal to 33475 /h

/ = measuring energy per time - Equal to 1 being output in an hour MBH = Thousand per = British thermal -The amount of heat required to raise the temperature of one pound of water by one degree Fahrenheit Bar = Metric of pressure

This will equate to 2321 kg/ of needed (1000000 ÷ 4308) Determine minimum required power Once the total amount of is known it is very simple to determine power Simply divide the total amount of required by either 159 kg/ hp or 35 lbs/ hp (depending on used)

Boiler horsepower a unit of measurement of power of steam boilers from Wiki A BHP is equivalent to/Hr or 8430 Kcal/Hr and it should be noted that a boiler horsepower is 131547 times a normal horsepower Click on the Icon above will initiate Heat Converter Pressure Converter Temperature Converter Converted HP into LB

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