IP Library › Granted Patent US 12,345,279
Granted Patent B2
US 12,345,279 · App. 17/840,414 · Granted Jul 1, 2025

Oil lubricated fluid pumps with oil separators

Inventors: David Raju Yamarthi (Bengaluru, IN); Ravindra Shankar Ganiger (Bengaluru, IN); Mohan Kannaiah Raju (Bengaluru, IN); Prachi Anand Tappu (Bengaluru, IN); Santosh Pattnaik (Bengaluru, IN); Shishir Paresh Shah (Bengaluru, IN); Adam Joseph Wangler (Evandale, OH)
Assignee: GENERAL ELECTRIC COMPANY
F04D29/708F04D13/06F04D25/06F04D29/049F04D29/05F04D29/056F04D29/061F04D29/063F04D29/284F25B1/053F25B31/002F25B31/004F25B2400/23F25B2500/16
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Quick Facts
Patent No.
US 12,345,279
App. No.
17/840,414
Granted
Jul 1, 2025
Kind
B2
Abstract

Oil lubricated supercritical fluid pumps with oil separators are disclosed herein. An example pump system to pressurize a fluid within a closed loop thermal transport bus disclosed herein includes a pump housing, a duct fluidly coupled to the pump housing, a first portion of the duct to include a mixture of an oil and the supercritical fluid, a second portion of the duct to include the supercritical fluid, and a separator positioned in a third portion of the duct between the first portion of the duct and the second portion of the duct, the separator to separate the oil in the mixture from the supercritical fluid.

Claims (34)

1. A pump system to pressurize a supercritical fluid within a closed loop thermal transport bus, the pump system comprising:

a pump housing;

a duct fluidly coupled to the pump housing, a first portion of the duct to include a mixture of an oil and the supercritical fluid, a second portion of the duct to include the supercritical fluid;

a separator positioned in a third portion of the duct between the first portion of the duct and the second portion of the duct, the separator to separate the oil in the mixture from the supercritical fluid;

a rotatable shaft disposed in the pump housing;

a motor coupled to the rotatable shaft, wherein the rotatable shaft includes a first end and a second end opposite the first end, a first portion of the rotatable shaft disposed between the first end and the motor, a second portion of the rotatable shaft disposed between the second end and the motor;

an impeller coupled to the first end of the rotatable shaft;

a first bearing coupled to the first portion of the rotatable shaft, the first bearing including a first stiffness; and

a second bearing coupled to the second portion of the rotatable shaft, the second bearing including a second stiffness greater than the first stiffness.

2. The pump system of claim 1 , wherein the separator includes a rotatable shaft and vanes extending from the rotatable shaft.

3. The pump system of claim 1 , wherein the separator includes a conical swirler, the conical swirler including open axial ends and holes in a surface between the open axial ends.

4. The pump system of claim 1 , wherein the separator includes:

a rotatable shaft including vanes; and

a casing positioned around the rotatable shaft, the casing including holes facing the rotatable shaft.

5. The pump system of claim 4 , wherein the casing is stationary within the duct.

6. The pump system of claim 4 , wherein the rotatable shaft rotates in a first direction and the casing rotates in a second direction opposite the first direction.

7. The pump system of claim 1 , wherein the separator includes a swirler and a filter positioned in series in the third portion of the duct.

8. The pump system of claim 1 , wherein the duct is fluidly coupled to a first portion of the pump housing and a second portion of the pump housing.

9. The pump system of claim 1 , wherein the first bearing and the second bearing include rolling element bearings, and wherein the rolling element bearings are lubricated with the oil.

10. The pump system of claim 1 , further including a gearbox to rotatably couple the first portion of the rotatable shaft and the second portion of the rotatable shaft, wherein the gearbox is lubricated with the oil.

11. A pump system to pressurize a supercritical fluid within a closed loop thermal transport bus, the pump system comprising:

a pump housing;

a duct fluidly coupled to the pump housing to transport the supercritical fluid and an oil; and

a separator including an oil absorbent material positioned in the duct to separate the oil from the supercritical fluid;

a rotatable shaft disposed in the pump housing;

a motor coupled to the rotatable shaft, wherein the rotatable shaft includes a first end and a second end opposite the first end, a first portion of the rotatable shaft disposed between the first end and the motor, a second portion of the rotatable shaft disposed between the second end and the motor;

an impeller coupled to the first end of the rotatable shaft;

a first bearing coupled to the first portion of the rotatable shaft, the first bearing including a first stiffness; and

a second bearing coupled to the second portion of the rotatable shaft, the second bearing including a second stiffness greater than the first stiffness.

12. The pump system of claim 11 , wherein the oil absorbent material includes at least one of a polymer or a powder.

13. The pump system of claim 11 , wherein the separator includes baffles.

14. The pump system of claim 13 , wherein the baffles are formed via sheet metals or additive manufacturing.

15. The pump system of claim 13 , wherein the separator includes a first conduit fluidly coupled to a second conduit below the first conduit, the second conduit including the oil absorbent material.

16. The pump system of claim 11 , wherein the oil is mixed with an additive to increase a viscosity of the oil.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2022
From: YAMARTHI, DAVID RAJU; GANIGER, RAVINDRA SHANKAR; RAJU, MOHAN KANNAIAH; TAPPU, PRACHI ANAND; PATTNAIK, SANTOSH; SHAH, SHISHIR PARESH; WANGLER, ADAM JOSEPH
To: GENERAL ELECTRIC COMPANY
Reel/Frame 060516/0063 →
Priority Claims (1)
IN 202211025723 · May 3, 2022 · national
Continuity (1)
Related Publication 20230358255A1 · Nov 9, 2023
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