IP Library Granted Patent US 11,635,091
Granted Patent B2
US 11,635,091 · App. 17/249,415 · Granted Apr 25, 2023

Compressor with integrated accumulator

Inventors: Andrew Zug (Costa Mesa, CA); Amanda Webb (San Pedro, CA); Michael Leighty (Westminster, CA)
Assignee: Honeywell International Inc.
F04D29/426F04D29/22
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Quick Facts
Patent No.
US 11,635,091
App. No.
17/249,415
Granted
Apr 25, 2023
Kind
B2
Abstract

The disclosed technology generally relates to a compressor housing, comprising a first portion configured to house a compressor motor of a centrifugal compressor, a second portion configured to house an inlet housing of the centrifugal compressor, where the inlet housing is configured to receive refrigerant into an impeller assembly of the centrifugal compressor, and at least one refrigerant accumulator upstream of the second portion, the at least one refrigerant accumulator configured to accumulate liquid refrigerant.

Claims (40)

1. A compressor housing, comprising:

a first portion configured to house a compressor motor of a centrifugal compressor, wherein the first portion includes an inlet port, wherein the first portion comprises a first volume and a second volume separated by a porous wall, and wherein the first volume is configured to house the compressor motor;

a second portion configured to house an inlet housing of the centrifugal compressor, wherein the second portion includes an outlet port configured to flow refrigerant to an outside of the compressor housing, and wherein the inlet housing is configured to receive refrigerant into an impeller assembly of the centrifugal compressor; and

at least one refrigerant accumulator upstream of the second portion, wherein the at least one refrigerant accumulator is configured to accumulate liquid refrigerant within the compressor housing, and wherein the second volume of the first portion includes the at least one refrigerant accumulator.

2. The compressor housing of claim 1 , wherein the at least one refrigerant accumulator is configured to accumulate the liquid refrigerant independent of an orientation of the at least one refrigerant accumulator.

3. The compressor housing of claim 1 ,

wherein the first portion of the compressor housing defines a cavity, and

wherein the at least one refrigerant accumulator spans around a circumference of the cavity.

4. The compressor housing of claim 1 , wherein the first portion and the second portion are separated by a separation plate.

5. The compressor housing of claim 1 , wherein the second volume is upstream of the first volume.

6. The compressor housing of claim 5 ,

wherein the compressor housing defines an axis of flow from the first portion to the second portion, and

wherein the at least one refrigerant accumulator is bounded by an aft side of the compressor housing relative to the axis of flow and a lateral side of the compressor housing relative to the axis of flow.

7. The compressor housing of claim 1 ,

wherein the porous wall is configured to:

permit refrigerant to enter the at least one refrigerant accumulator as liquid refrigerant; and

permit refrigerant to leave the at least one refrigerant accumulator as substantially vapor refrigerant.

8. The compressor housing of claim 1 ,

wherein an inner surface of the first volume has a first radius, and

wherein an inner surface of the second volume has a second radius that is greater than the first radius.

9. The compressor housing of claim 1 , wherein the inlet port opens into the at least one refrigerant accumulator.

10. The compressor housing of claim 1 , wherein the compressor housing is configured to position a stator of the compressor motor proximate to the at least one refrigerant accumulator.

11. The compressor housing of claim 1 , wherein the compressor housing is configured to position a motor controller for the compressor motor proximate to the at least one refrigerant accumulator.

12. The compressor housing of claim 11 , wherein the first portion of the compressor housing comprises one or more heat sink fins extending into the at least one refrigerant accumulator, and wherein the one or more heat sink fins are configured to dissipate heat generated by the motor controller into liquid refrigerant in the at least one refrigerant accumulator.

13. The compressor housing of claim 1 , wherein the compressor housing is configured to position a return line for a condenser proximate to the at least one refrigerant accumulator.

14. A centrifugal compressor, comprising:

a compressor motor;

an impeller assembly operably coupled to the compressor motor;

an inlet housing configured to receive refrigerant into the impeller assembly; and

a compressor housing comprising:

a first portion configured to house the compressor motor, wherein the first portion includes an inlet port, wherein the first portion comprises a first volume and a second volume separated by a porous wall, and wherein the first volume is configured to house the compressor motor;

a second portion configured to house the inlet housing, wherein the second portion includes an outlet port configured to flow refrigerant to an outside of the compressor housing; and

at least one refrigerant accumulator upstream of the second portion, wherein the at least one refrigerant accumulator is configured to accumulate liquid refrigerant within the compressor housing, and wherein the second volume of the first portion includes the at least one refrigerant accumulator.

15. The centrifugal compressor of claim 14 , wherein a stator of the compressor motor is positioned proximate to the at least one refrigerant accumulator.

16. The centrifugal compressor of claim 14 , further comprising a motor controller for the compressor motor proximate to the at least one refrigerant accumulator.

17. The centrifugal compressor of claim 14 , further comprising a separation plate configured to separate the first portion and the second portion.

18. The centrifugal compressor of claim 14 , wherein the at least one refrigerant accumulator is configured to accumulate the liquid refrigerant independent of an orientation of the at least one refrigerant accumulator.

19. The centrifugal compressor of claim 14 ,

wherein the compressor housing defines an axis of flow from the first portion to the second portion, and

wherein the at least one refrigerant accumulator is bounded by an aft side of the compressor housing relative to the axis of flow and a lateral side of the compressor housing relative to the axis of flow.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2021
From: ZUG, ANDREW; WEBB, AMANDA; LEIGHTY, MICHAEL
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 055455/0107 →
Continuity (3)
Provisional Application 62989455 · Mar 13, 2020
Provisional Application 63002806 · Mar 31, 2020
Related Publication 20210285462A1 · Sep 16, 2021
Cited By (3)
US 12,241,473 US 12,535,075 US 12,546,522