Btu h to kw h

    • [DOC File]Technical Manual, Sec. 10, Ch. 1: Metric System Conversion

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      1 Btu/s. 0.7456999 kW . 1 hp (550 lbf/s) 0.746 kW . 1 hp (electric) 0.2930711 W . 1 Btu/h. Table X:1-15. Miscellaneous. Heat Rate Flow. 1.055056 kW . 1 Btu/s. Heat Capacity. 1.899108 kJ/ºC . 1 Btu/ºF. Magnetic Field Strength. 79.57747 A/m . 1 oersted (Oe) Conductivity. 100 S/m . 1 mho/cm. Wavelength. 0.1 nm . 1 angstrom (Å) Luminance.


    • [DOCX File]Energy-Efficient Heating, Ventilating and Air Conditioning

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      Qf = Qh / Effh = 416,700 Btu/h / 0.80 = 520,875 Btu/hr Calculating Annual Fuel Use with the Degree-Day Method A useful method for calculating annual heating and cooling energy use is called the degree-day method.


    • [DOCX File]Section 23 05 93 - TESTING, ADJUSTING, AND …

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      Low-fire fuel input in kW (Btu/h) or fire input at each stage if multi-stage or if modulating then at a minimum of full load and two part load points. High-fire fuel input in kW (Btu/h). Manifold pressure in kPa (psig). High-temperature-limit setting in degrees C (degrees F).


    • [DOC File]SECTION 238113.11 - THROUGH THE WALL PACKAGED …

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      With louvers, less than 20,000 Btu/h ([ ] kW) - 10.0 or greater. With louvers, equal to or greater than 20,000 Btu/h ([ ] kW) - 9.0 or greater. Without louvers, all cooling capacities - 9.0 or greater. CAPACITIES AND CHARACTERISTICS. Outdoor Air-Intake Rate: < Insert cfm (L/s) >. Cooling Capacity: Energy-Efficiency Ratio: < Insert number >.


    • [DOCX File]ARCAT | Free Building Product CAD Details, BIM, Specs and …

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      Model: EB-NB-280-600H, 600 V, 278 kW, 267.5 A, 7 elements at 20 kw and 6 elements at 23 kW, 948,575 Btu/h, 7 to 95 gpm flow rate at 20 degrees F delta T, 725 Ibs (329 kg) boiler weight Model: EB-NB-300-600, 600 V, 300 kW, 288.7 A, 15 elements at 20 Kw, 1,023,642 Btu/h, 7 to 103 gpm flow rate at 20 degrees F delta T, 735 lb (333 kg) boiler weight.


    • [DOCX File]SECTION 23 81 23 - COMPUTER-ROOM AIR-CONDITIONERS

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      2.Coefficient of Performance (COP): A ratio calculated by dividing the change in heating or cooling capacity (Btu/h) to the energy consumed by the system (kW), expressed in Btu/kWh. 3.Unitary (AHRI): Consists of one or more factorymade assemblies, which normally include an evaporator or cooling coil, a compressor and condenser combination, and ...


    • Assignment 1: - ResearchGate | Find and share research

      Heat rate= input ( Btu h ) out put (Kw) = Btu Kwh . Heat rate= input MBtu h * 10 6 out put Mw *1000 = Btu Kwh . So all fuel input should be in Btu and all Power outputs should be in Kw.


    • [DOC File]HOW TO CALCULATE HEATING, HOT WATER, AND …

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      Whichever fuel is used less, convert btu fuel usage from that fuel to the fuel that is used more often (Example: if you used 1000 gallons of # 2 oil, that would be 138,000,000 btu or 1380 therms of gas) Put these deliveries in the best chronological order …


    • [DOC File]FORMULA SHEET - Homestead

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      B.H.P.2 ÷ B.H.P.1 3412 BTU's = 1 KW. Calculation of Velocity and Volumes 1. A single duct/ single zone A/C roof top unit is supplying air to the conditioned space by way of a 24” by 12” supply duct. Calculate the air velocity as well as the volume (CFM). A pitot tube manometer reads 0.06 inches water column.


    • [DOCX File]Problem set 7: 5

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      At steady state, a heat pump provides 30,000 Btu/h to maintain a dwelling at 68°F on a day when the outside temperature is 35°F. The power input to the heat pump is 5 hp. If electricity costs 8 cents per kW · h, compare the actual operating cost with the minimum theoretical operating cost for each day of operation.


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