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Home Heat Accumulators Variable-capacity-multiple-compressor-refrigeration-system

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Details
Inventors: Conley, Thomas F.; Gylland, Jr., Ernest F.; Steele, George E.;
Assignee: Westinghouse Electric Corp. (Pittsburgh, PA)
Primary Examiner: Vrablik; John J.
Assistant Examiner: Ross; Thomas I.
Attorney, Agent or Firm: Arenz; E. C.

The disclosed system includes first and second hermetic shell compressors, one of which always runs while the system is operating and includes unloading means for running at half load, and the other compressor operating at full load or not at all so that four operating capacity steps are available, both of the compressors having shells with suction gas inlets, oil equalizer line ports, and gas exchange line ports being identically sized and located with respect to each other so that standard compressors can be stocked and used in the multiple compressor system while the multiple compressor system is capable of being operated at the varying capacities.

DETAILED DESCRIPTION We claim: 1.
In a variable capacity multiple compressor refrigeration system of the type having a first hermetic compressor which always runs while the system is operating and includes unloading means for running at half load, and a second hermetic shell compressor which operates at full load or not at all, so that four operating capacities are available from the system: each of the compressors having shells with suction gas inlets identically sized and located on the upper portion of the shells, with oil equalizer line ports identically sized and located on the lower portion of the shells near the level of the normal oil level during operation, and with gas exchange line ports identically sized and located on the upper portion of the shells; first suction conduit means for connecting the inlet port of said first compressor to the system suction gas return line, the suction gas return line having a larger diameter than the diameter of said inlet ports; second suction conduit means connecting the inlet port of said second compressor to the system suction gas return line; an oil equalizer line connecting said oil equalizer line ports; a gas exchange line connecting said gas exchange line ports, said gas exchange line functioning to pass suction gas from the shell of said first compressor to said second compressor when said second compressor is running, and said first compressor is running in an unloaded condition, to promote cooling of said first compressor in its unloaded condition.
2.
In the system of claim 1 wherein: said connection of said second suction conduit means to the system suction gas return line is of a character to cause the return of more than half of the oil in the refrigerant in the suction gas return line to pass into the first compressor.
3.
In a system according to claim 1 wherein: said oil equalizer line includes filter means therein.
4.
In a system according to claim 1 wherein: said oil equalizer line presents significantly greater resistance to suction gas flow therethrough relative to the resistance of said gas exchange line so that when said first compressor operates alone, the flow of cool suction gas from the lower portion of said second compressor to said first compressor is relatively small as compared to the flow of suction gas through said gas exchange line



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