IP Library Granted Patent US 12,104,622
Granted Patent B2
US 12,104,622 · App. 18/237,721 · Granted Oct 1, 2024

Motorized pressure exchanger with a low-pressure centerbore

Inventor: Alexander Patrick Theodossiou (Alameda, CA)
Assignee: Energy Recovery, Inc.
F04F13/00E21B43/267
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Quick Facts
Patent No.
US 12,104,622
App. No.
18/237,721
Granted
Oct 1, 2024
Kind
B2
Abstract

A pressure exchanger includes a rotor configured to receive first fluid, receive second fluid, and exchange pressure between the first fluid and the second fluid. The pressure exchanger further includes a first component forming a low-pressure port, wherein the first fluid is routed between the rotor and the low-pressure port via a low-pressure passageway. The pressure exchanger further includes a second component forming a fluid passageway between the low-pressure passageway and a centerbore of the pressure exchanger.

Claims (27)

1. A pressure exchanger comprising:

a rotor configured to receive a first fluid, receive a second fluid, and exchange pressure between the first fluid and the second fluid;

a first component forming a low-pressure port, wherein the first fluid is routed between the rotor and the low-pressure port via a low-pressure passageway; and

a second component comprising a piston that extends from a main body of the second component, the second component forming the low-pressure passageway through the piston and the main body, the second component forming a centerbore through the piston and the main body, an upper surface of the piston forming a fluid passageway between the low-pressure passageway and the centerbore.

2. The pressure exchanger of claim 1 further comprising:

a shaft attached to the rotor, wherein the shaft is routed through the centerbore; and

a motor coupled to the shaft, wherein the motor is configured to control rotation of the rotor via the shaft.

3. The pressure exchanger of claim 1 , wherein the first component is a housing endcap.

4. The pressure exchanger of claim 3 , wherein the second component is a seal plate.

5. The pressure exchanger of claim 4 further comprising an end cover disposed between the seal plate and the rotor, the end cover forming one or more apertures, wherein the end cover is configured to direct flow of the first fluid between the seal plate and the rotor via the one or more apertures.

6. The pressure exchanger of claim 5 , wherein the housing endcap, the seal plate, the end cover, and the rotor each form a corresponding portion of the centerbore, wherein a shaft is routed through the housing endcap, the seal plate, and the end cover.

7. The pressure exchanger of claim 1 , wherein the first component further forms a high-pressure port.

8. A pressure exchanger comprising:

a housing endcap forming a low-pressure port, wherein a first fluid is to be routed between a rotor and the low-pressure port via a low-pressure passageway formed by the pressure exchanger; and

a seal plate comprising a piston that extends from a main body of the seal plate, the seal plate forming the low-pressure passageway through the piston and the main body, the seal plate forming a centerbore through the piston and the main body, an upper surface of the piston forming a fluid passageway between the low-pressure passageway and the centerbore.

9. The pressure exchanger of claim 8 , wherein the housing endcap, the seal plate, and the rotor each form a corresponding portion of the centerbore, wherein a shaft is routed through the housing endcap and the seal plate to attach to the rotor.

10. The pressure exchanger of claim 8 , wherein the housing endcap further forms a high-pressure port.

11. The pressure exchanger of claim 8 , wherein an adapter plate is disposed between the housing endcap and the seal plate.

12. The pressure exchanger of claim 9 , wherein the fluid passageway is configured to cause the centerbore and the shaft to be at a lower pressure than an incoming high-pressure fluid.

13. A seal plate of a pressure exchanger, the seal plate comprising:

a main body forming a high-pressure passageway; and

a piston that extends from the main body, the seal plate forming a low-pressure passageway through the piston and the main body, the seal plate forming a centerbore through the piston and the main body, an upper surface of the piston forming a fluid passageway between the low-pressure passageway and the centerbore.

14. The seal plate of claim 13 , wherein a first fluid is to be routed between a rotor and a low-pressure port of a housing end cap via the low-pressure passageway of the seal plate.

15. The seal plate of claim 13 , wherein a first fluid is to be routed between the low-pressure passageway of the seal plate and a rotor via an end cover.

16. The seal plate of claim 13 , wherein a first seal is disposed on a lower surface of the main body around the high-pressure passageway.

17. The seal plate of claim 13 , wherein a second seal is disposed on a lower surface of the main body around the low-pressure passageway, the centerbore, and the high-pressure passageway.

18. The seal plate of claim 13 , wherein an upper surface of the main body and the upper surface of the piston are configured to be disposed against a lower surface of an adapter plate that forms a recess configured to receive at least a portion of the piston.

Assignments (2)
SECURITY INTEREST Recorded Jan 21, 2026
From: ENERGY RECOVERY, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 073535/0966 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2023
From: THEODOSSIOU, ALEXANDER PATRICK
To: ENERGY RECOVERY, INC.
Reel/Frame 065485/0330 →
Continuity (3)
Continuation 17900663 · Aug 31, 2022
Continuation 17190379 · Mar 2, 2021
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