Economized reciprocating compressor
10253766 ยท 2019-04-09
Assignee
Inventors
Cpc classification
F25B1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B31/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B9/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B2400/13
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2201/0807
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B39/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B9/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25B1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A compressor (22) has: a case (32) defining: a first cylinder bank (70) having a plurality of cylinders (76, 77); a cylinder head (100); a suction port (26); a discharge port (28); and an economizer port (30); a plurality of pistons, each individually associated with a respective one of the cylinders; and a crankshaft (202) held by the case for rotation about a crankshaft axis and coupled to the pistons. The first cylinder bank cylinder head is divided into: a first suction chamber (130); a second suction chamber (132); and a single discharge chamber (128). The first cylinder bank first suction chamber is coupled to the suction port. The first cylinder bank second suction chamber is coupled to the economizer port. The first cylinder bank discharge chamber is coupled to the discharge port.
Claims
1. A compressor (22) comprising: a case (32) defining: a first cylinder bank (70) having a plurality of cylinders (76, 77) and a cylinder head (100); a suction port (26); a discharge port (28); and an economizer port (30); and a plurality of pistons, each individually associated with a respective one of the cylinders; and a crankshaft (202) held by the case for rotation about a crankshaft axis and coupled to the pistons, wherein: the first cylinder bank cylinder head is divided into: a first suction chamber (130); a second suction chamber (132); and a single discharge chamber (128); the first cylinder bank first suction chamber is coupled to the suction port; the first cylinder bank second suction chamber is coupled to the economizer port; and the first cylinder bank discharge chamber is coupled to the discharge port.
2. The compressor of claim 1 wherein: the economizer port is on the first cylinder bank cylinder head.
3. The compressor of claim 1 wherein: the economizer port and the discharge port are on the first cylinder bank cylinder head.
4. The compressor of claim 1 wherein: the case (32) further defines: a second cylinder bank (72) having a plurality of cylinders (78, 79); and for the second cylinder bank, a cylinder head (102); the second cylinder bank cylinder head is divided into: a single suction chamber (120); and a single discharge chamber (124); the second cylinder bank suction chamber is coupled to the suction port; and the second cylinder bank discharge chamber is coupled to the discharge port.
5. The compressor of claim 4 wherein: the first cylinder bank and the second cylinder bank have identical valve plates.
6. The compressor of claim 4 wherein: a first cylinder of the first cylinder bank and the cylinders of the second cylinder bank have a first displacement; and a second cylinder of the first cylinder bank associated with the second suction chamber has a second displacement, different than the first displacement.
7. The compressor of claim 4 wherein: the first cylinder bank first suction chamber and second cylinder bank suction chamber are coupled to the suction port via a sump (140) of the compressor.
8. The compressor of claim 4 wherein: the case defines a third cylinder bank (74).
9. The compressor of claim 4 wherein: the case defines a third cylinder bank (74) having a head (104) divided into a single suction chamber (122) and a single discharge chamber (126).
10. The compressor of claim 9 wherein: the third cylinder bank suction chamber is coupled to the suction port; and the third cylinder bank discharge chamber is coupled to the discharge port.
11. The compressor of claim 10 wherein: the first, second, and third cylinder banks each have exactly two cylinders.
12. The compressor of claim 10 wherein: the second cylinder bank is a central cylinder bank; and the first cylinder bank discharge chamber and third cylinder bank discharge chamber are coupled to the discharge port via the second cylinder bank discharge chamber.
13. A method for using the compressor of claim 4, the method comprising: passing a first flow to the suction port; passing a second flow to the economizer port; splitting the first flow into respective first and second branch flows to the first cylinder bank first suction chamber and the second cylinder bank suction chamber passing the first branch flow through a first cylinder of the first cylinder bank to the first cylinder bank discharge chamber; passing the second branch flow through the second cylinder bank cylinders in parallel to the first cylinder bank discharge chamber; passing the second flow through a second cylinder of the first cylinder bank to the first cylinder bank discharge chamber; and passing a combined flow from the first cylinder bank discharge chamber and the second cylinder bank discharge chamber out the discharge port.
14. The compressor of claim 1 further comprising: an electric motor (200) coupled to the crankshaft to drive rotation of the crankshaft.
15. The compressor of claim 1 wherein: a wall (134) of the first cylinder bank cylinder head between the first suction chamber and the second suction chamber intersects a wall (250) between the discharge chamber of the first cylinder bank and the first and second suction chambers of the first cylinder bank.
16. The compressor of claim 1 wherein: a portion (260) of the first cylinder bank cylinder head blocks the first cylinder bank second suction chamber from communication with a port in a valve plate of the first cylinder head, the port communicating with a sump of the compressor.
17. The compressor of claim 16 wherein: the portion (260) of the first cylinder bank cylinder head is a wall intersecting another wall (250) dividing the first cylinder bank discharge chamber from the first cylinder bank second suction chamber.
18. A system comprising the compressor of claim 1 and further comprising: a heat rejection heat exchanger (40); an expansion device (42); a heat absorption heat exchanger (44); a refrigerant flowpath (24) from the discharge port sequentially through the heat rejection heat exchanger, expansion device, and heat absorption heat exchanger, returning to the suction port; and an economizer flowpath (50) branching from the refrigerant flowpath to return to the economizer port.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(11) Like reference numbers and designations in the various drawings indicate like elements.
DETAILED DESCRIPTION
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(13) In the normal operational mode, the main refrigerant flowpath 24 proceeds sequentially from the discharge port 28 downstream through a first heat exchanger 40 (e.g., a condenser or gas cooler acting as a heat rejection heat exchanger), an expansion device 42 (e.g., an electronic expansion valve or the like), and a second heat exchanger 44 (e.g., an evaporator serving as a heat rejection heat exchanger) before returning to the suction port 26.
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(16) In the exemplary baseline compressor, the compressor suction port 26 communicates with a sump 140 and via the sump to the suction chambers. This communication may be provided by one or more passageways extending outward through the cylinder case (e.g., that defines the bores of the cylinders). In this example, there are two passageways 142, 144, one at either end of the bank. In the reengineering of the first bank, the second passageway 144 is eliminated (e.g., as is discussed below, one portion of that passageway may be eliminated, leaving other portions moot). That passageway is replaced with a passageway 150 that may extend through the cylinder case or directly into the head from the economizer port 30.
(17) In the exemplary baseline compressor, the compressor discharge port 28 is coupled via a passageway 160 to the second bank discharge chamber 126. The passageway 160 may simply be within the head 102. The first bank discharge chamber 128 and third bank discharge chamber 176 are coupled via respective passageways 162, 164 (crossover passageways) to the second bank discharge chamber 124.
(18) An exemplary layout of the compressor is a W layout wherein the three banks are spaced at intervals circumferentially about a crank axis with the cylinders of each bank being spaced axially and facing generally radially outward. The exemplary arrangement places the bank 126 in the center of a close grouping of the three banks.
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(22) In order to form the exemplary present first bank cylinder head 100, the additional wall 134 and associated gasket leg 234 (
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(24) An alternative modification could involve modifying the baseline center bank to become the economized bank.
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(27) Various asymmetries may be introduced in reengineering a configuration of a non-economized compressor to an economized compressor as discussed above or remanufacturing an existing non-economized compressor to become economized. The displacement of the cylinder associated with the economizer flow may be altered relative to the other cylinders (e.g., for example the cylinder associated with the economizer flow may have a smaller diameter than other cylinders). To accommodate change in bearing loading, connecting rod wrist pin bearings or other bearings may be altered for economized compressor. For example, the modified compressor could have a needle bearing instead of a fluid film bearing for a connecting rod wrist pin bearing for an economized cylinder
(28) The compressor and system may be made using otherwise conventional or yet-developed materials and techniques.
(29) The use of first, second, and the like in the description and following claims is for differentiation within the claim only and does not necessarily indicate relative or absolute importance or temporal order. Similarly, the identification in a claim of one element as first (or the like) does not preclude such first element from identifying an element that is referred to as second (or the like) in another claim or in the description.
(30) Where a measure is given in English units followed by a parenthetical containing SI or other units, the parenthetical's units are a conversion and should not imply a degree of precision not found in the English units.
(31) One or more embodiments have been described. Nevertheless, it will be understood that various modifications may be made. For example, when applied to an existing basic system, details of such configuration or its associated use may influence details of particular implementations. Accordingly, other embodiments are within the scope of the following claims.