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Scroll compressor picture - Scroll compressor photo

Technical information Refrigeration Scroll compressor

Scroll compressor

We will use a series of five visual effects for a description of the scroll compressor. The first four will track the progress of the refrigerant gas through one of the compressor, compress moving cameras. The last picture shows that the compression occurs in several of these cameras at the same time, the Assembly line. Scroll compressor reaches its pressure by the use of two spiral-shaped parts, called the scrolls. One scroll fixed, while the other orbits, without spinning inside the other. There is a contact Suction gas brought in from the outer part of the scroll. As movable scroll orbits, the residual gas is compressed in continuously decrease volume. Compressed gas comes to the middle of the scrolls. Due to 1, we see suction gas entering in the left part of the scroll. As movable scroll orbits counterclockwise, it is the opening will be closed and refrigerant within trap him.

Now, in position 2, movable scroll rotates approximately 180 degrees counterclockwise, the interception of suction gas and move into a smaller area, closer to the center of the compressor.

Reduction of the volume of gas from the first to the second position of the scroll is a small but significant.

As movable scroll continues to orbit counterclockwise an additional 180 degrees, the gas is compressed in an even smaller area. We now see it coming discharge.

Another 360-degree orbit compresses the gas in the least amount just before entering the compressor in the center of the scroll key. The process of compression for a single compartment gas was smooth and gradual; it takes about three full turns of movable scroll.

During actual operation of each 360 degree orbit movable scroll picks up two new branches refrigerant gas and discharges of two simultaneously. A total of six gas compartments which are in motion compression chambers, active at all times. This results in an almost continuous suction and discharge gas flow...

 
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