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Natural gas compressor stations utilize electric motors, natural gas engines and gas turbines to power reciprocating and centrifugal compressors that collect incoming gas, compress it to increase its flow pressure, and channel it to the next station.
As gases, these molecules naturally space themselves out, filling up the volume available in free space. When we compress air, we force those molecules closer together. The same molecules are in the air but occupy less space (volume) than when the molecules are free.
Natural gas compression services are used to transport natural gas. Compression is often used to get natural gas from low-pressure wells to gathering systems, and to maintain production as reservoir pressure declines.
Gas compression changes the state of the gas, i.e., temperature, pressure, volume and gas compression are done to increase the pressure. There are three styles of gas compression methods in industrial applications. These are piston compressors, rotary screw compressors, and rotary vane compressors.
Natural Gas Compressors work by mechanically increasing gas pressure in stages (or steps) until it reaches the desired delivery point. The starting pressure and the desired ending pressure will determine how many stages a compressor will have.
The compression of gas occurs by the movement of a flexible membrane, instead of an intake element. The back and forth movement of the membrane is driven by a rod and a crankshaft mechanism. Only the membrane and the compressor box come in touch with the gas being compressed.