What are the differences in the driving energy sources of gas generators?

Release time:2023-03-20 Publisher:ZHONGTUO
The difference between internal combustion engine power generation and steam and gas turbines: The power generation device is divided into two parts: the power generation part and the power generation part. Generally, the power generation part is similar, both of which are coil cutting magnetic induction lines. The cutting motion is rotary motion, while the power part is different, which is the fundamental difference you need to ask.
 
1. Gas turbine: a compressor (i.e. compressor) continuously sucks in air from the atmosphere and compresses it; The compressed air enters the combustion chamber, mixes with the injected fuel, and then combusts to become high-temperature gas, which then flows into the gas turbine to expand and work, driving the turbine wheel to rotate together with the compressor wheel; The work capacity of the heated high-temperature gas is significantly improved, so while the gas turbine drives the compressor, there is still residual work as the output mechanical work of the gas turbine. When starting a gas turbine from a standstill, it is necessary to use a starter to rotate it. The starter will not be disengaged until it accelerates to independent operation.
燃气发电机组
 
2. Internal combustion engine power generation: It is the same as in automobiles. The fuel is burned in the cylinder, and the gas expands to push the piston. The piston is transmitted to the crankshaft through a crank cam mechanism. The crankshaft rotates, which can drive the power generation part. Internal combustion engine power generation equipment mainly includes diesel power generation units and gas power generation units. Gas power generation units are also divided into biogas power generation units, natural gas power generation units, gas power generation units, biomass gas power generation units, gas power generation units, and so on.
 
3. Steam turbine: superheated steam enters the turbine and acts on the rotor through nozzles formed by moving and stationary cascades, converting pressure energy and thermal energy into mechanical energy, causing the rotor to rotate and move, which can also drive the power generation part.
 
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