Gas power plant 1500:
Power, kW 1500
Rotation speed, rpm 1500 (50 Hz)
Average effective pressure, bar 18.1
Exhaust gas temperature (approx.), °C 423
Mass of exhaust gases in a wet state (approx.), kg/h 8422
Amount of air for fuel combustion (approx.), kg/h 8155
Air temperature, (min./opt.), °C 20/25
Amount of supply air (approx.), kg/h 38242
Cylinder diameter/piston stroke, mm 170/195
Working volume, dm3 70.8
Compression ratio 13.5: 1
Average piston speed, m/s 9.8
Volume
lubricants, dm3 265
Average
oil consumption at full load, g/kWh 0.20
Generator efficiency, % 97.2
Electric power at the generator terminals, kW 1500
Heat transfer capacity of the cooling jacket (± 8%), kW 790
The heat output of the 2nd stage intercooler (± 8%), kW 134
Power of exhaust heat transfer,
cooled to 120 °C (± 8%), kW 796
Thermal radiation of the engine, kW 52
(//tractor-service.com)
Heat radiation
electric generator, kW 45
Power of fuel consumption (+ 5%), kW 3606
Electrical efficiency, % 43.3
Thermal efficiency, % 44
Total efficiency, % 87.3
Fluid consumption in the cooling jacket (min/max.), m3/h 50/65
KVS engine coefficient, m3/h 46
Coolant consumption in the intercooler, m3/h 35
KVS-intercooler coefficient, m3/h 30
Volume of the cooling jacket, dm3 151
Intercooler coolant volume, dm3 28
Gas piston power plants produce electricity from various types of gas fuel. Power plants are functioning:
on natural gas,
biogas,
accompanying gas,
mine gas.
gas of wastewater treatment facilities,
landfill gas,
Gas-piston power plants have a simple and reliable design, proven by decades of operation in a wide variety of climatic conditions. The electrical efficiency of gas-piston power plants is considered high, unlike, for example, turbines and microturbines, and when working on high-quality natural gas is ~ 40-50%.
This means that for the production of the same volume of electricity, compared to turbines, gas-piston power plants consume one-third (!) less natural gas.
Gas piston power plants are presented in a wide range of unit electric power from 800 kW to 4 MW. This power range is basic. That is, in the small and medium range for consumers, it is possible to obtain almost any value of the electric power of an autonomous gas-piston power plant.
Almost all models and brands of gas-piston power plants in extended configuration are capable of operating in cogeneration mode, i.e. as thermal power plants. The temperature of the exhaust gases at the exit from the power engine of the gas-piston power plant is ~ 390 ± 10 ° C. This temperature allows you to easily obtain practically free thermal energy in the cogeneration mode.
The ratio of the production of electricity and thermal energy is 1:1, that is, 1 MW of thermal energy can be obtained for 1 MW of installed electric power.
The coefficient of production of saturated steam in a gas-piston power plant is 0.5-0.7. Steam can be used for industrial purposes.