IP Library Granted Patent US 10,822,933
Granted Patent B2
US 10,822,933 · App. 16/780,089 · Granted Nov 3, 2020

Electric submersible pumping unit

Inventors: Mitchell Lee Crane (Tulsa, OK); Jose Mauricio Oviedo Gualdron (Tulsa, OK)
Assignee: Extract Management Company, LLC
E21B43/128E21B33/1275E21B36/006E21B41/0085F04D13/06F04D25/0606F04D25/0686F04D29/041F04D29/046F04D29/5806F04D29/586F16C17/02F16C17/04F16C33/1065H02K5/10H02K5/132H02K5/1677H02K9/19E21B43/38F04D1/06F04D13/086F04D13/10F04D17/16F04D29/061F04D29/5866F16C2360/00F16C2360/44H02K2205/03
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Quick Facts
Patent No.
US 10,822,933
App. No.
16/780,089
Granted
Nov 3, 2020
Kind
B2
Abstract

An electric submersible pump assembly with integral heat exchanger, high-speed self-aligning bearings, and dual bearing thrust chamber is described. The described pump assembly, modules, and components may be used for operating an electric submersible pump at high speeds as well as over a wide range of speeds and flowrates without replacing downhole equipment. The described pump assembly may be shorter than comparable pump assemblies and may be assembled offsite, thereby leading to faster and easier installation with less down time. By operating over a wide range of speeds, the disclosed pump assembly allows the operator to reduce overall inventory, reduce down time for the well, and avoid other complications associated with replacing a pump assembly or other downhole components.

Claims (44)

1. A motor for an electrical submersible pump assembly, the motor comprising:

a head module;

a power module comprising threads on an inner diameter which turn in a first direction;

a base module comprising threads on an inner diameter which turn in a second direction; and

a single-piece housing coupling comprising a first end and a second end, the first end of the single-piece housing coupling comprising threads on an outer diameter which turn in a first direction, the second end of the single-piece housing coupling comprising threads on an outer diameter which turn in a second direction,

wherein the base module is joined directly to the power module using the threads on the single-piece housing coupling, the threads on the power module, and the threads on the base module.

2. The motor of claim 1 , wherein the head module is joined to the power module using a second single-piece housing coupling.

3. The motor of claim 1 , further comprising a lock nut, and a spacer ring.

4. The motor of claim 1 , further comprising a heat exchanger.

5. The motor of claim 1 , further comprising an impeller, a central heat exchanger, and a lower heat exchanger, the impeller arranged to drive lubricant into the central heat exchanger;

the central heat exchanger comprising a central exterior housing, a central interior housing, and a central lubricant return tube, wherein the central interior housing is disposed within the central exterior housing and defines a central heat exchanger lubricant pathway therebetween, and wherein the central lubricant return tube is disposed within the central interior housing;

the lower heat exchanger comprising a lower exterior housing, a lower interior housing, and a lower lubricant return tube, wherein the lower interior housing is disposed within the lower exterior housing and defines a lower heat exchanger lubricant pathway therebetween, and wherein the lower lubricant return tube is disposed within the lower interior housing and is in fluid communication with the lower heat exchanger lubricant pathway;

wherein the central heat exchanger is connected to the lower heat exchanger such that the central heat exchanger lubricant pathway is in fluid communication with the lower heat exchanger lubricant pathway and the central lubricant return tube is in fluid communication with the lower lubricant return tube.

6. The motor of claim 1 , wherein the power module further comprises a radial bearing sleeve affixed to a rotor and a radial bushing coupled to the power module, wherein the radial bushing is configured to provide radial support to the bearing sleeve and rotor.

7. The motor of claim 6 , wherein the bearing sleeve comprises a material with a higher microhardness than material of the radial bushing.

8. A motor for an electrical submersible pump assembly, the motor comprising:

a head module;

a base module;

a first and a second power module disposed between the head module and base module wherein the first power module comprises threads on an inner diameter which turn in a first direction and wherein the second power module comprises threads on an inner diameter which turn in a second direction; and

a single-piece housing coupling comprising a first end and a second end, the first end of the single-piece housing coupling comprising threads on an outer diameter which turn in a first direction, the second end of the single-piece housing coupling comprising threads on an outer diameter which turn in a second direction,

wherein the first power module is joined directly to the second power module using the threads on the single-piece housing coupling, the threads on the first power module, and the threads on the second power module.

9. The motor of claim 8 , wherein the head module is joined to the first power module using a second single-piece housing coupling.

10. The motor of claim 8 , wherein the base module is joined to the second power module using a second single-piece housing coupling.

11. The motor of claim 8 , further comprising a lock nut, and a spacer ring.

12. The motor of claim 8 , further comprising a heat exchanger.

13. The motor of claim 8 , further comprising an impeller, a central heat exchanger, and a lower heat exchanger, the impeller arranged to drive lubricant into the central heat exchanger;

the central heat exchanger comprising a central exterior housing, a central interior housing, and a central lubricant return tube, wherein the central interior housing is disposed within the central exterior housing and defines a central heat exchanger lubricant pathway therebetween, and wherein the central lubricant return tube is disposed within the central interior housing;

the lower heat exchanger comprising a lower exterior housing, a lower interior housing, and a lower lubricant return tube, wherein the lower interior housing is disposed within the lower exterior housing and defines a lower heat exchanger lubricant pathway therebetween, and wherein the lower lubricant return tube is disposed within the lower interior housing and is in fluid communication with the lower heat exchanger lubricant pathway;

wherein the central heat exchanger is connected to the lower heat exchanger such that the central heat exchanger lubricant pathway is in fluid communication with the lower heat exchanger lubricant pathway and the central lubricant return tube is in fluid communication with the lower lubricant return tube.

14. The motor of claim 8 , wherein the first power module further comprises a radial bearing sleeve affixed to a rotor and a radial bushing coupled to the power module, wherein the radial bushing is configured to provide radial support to the bearing sleeve and rotor.

15. The motor of claim 14 , wherein the bearing sleeve comprises a material with a higher microhardness than material of the radial bushing.

16. The motor of claim 8 , wherein the first power module comprises an electric motor.

17. An electric submersible pump assembly, comprising:

a pump module comprising a pump shaft and an impeller;

a gas separator module comprising a gas separator shaft and an inducer;

a motor module comprising an electric motor configured to rotate a motor shaft;

a seal section configured to transmit torque from the motor shaft to the gas separator shaft and absorb thrust from the pump module; and

a single-piece housing coupling comprising a first end and a second end, the first end of the single-piece housing coupling comprising threads on an outer diameter which turn in a first direction, the second end of the single-piece housing coupling comprising threads on an outer diameter which turn in a second direction,

wherein (1) wherein an inner diameter of the pump module comprises threads which turn in a first direction and an inner diameter of the gas separator module comprises threads which turn in a second direction and wherein the pump module is joined directly to the gas separator module using the single-piece housing coupling, or (2) wherein an inner diameter of the gas separator comprises threads which turn in a first direction and an inner diameter of the seal section comprises threads which turn in a second direction and wherein the gas separator is joined directly to the seal section using the single-piece housing coupling, or (3) wherein an inner diameter of the seal section comprises threads which turn in a first direction and an inner diameter of the motor module comprises threads which turn in a second direction and wherein the seal section is joined directly to the motor module using the single-piece housing coupling.

18. The electric submersible pump assembly of claim 17 , further comprising a lock nut, and a spacer ring.

19. The electric submersible pump assembly of claim 17 wherein the pump module is joined directly to the gas separator module using the single-piece housing coupling and the gas separator is joined directly to the seal section using a second single-piece housing coupling.

20. The electric submersible pump assembly of claim 17 wherein the pump module is joined directly to the gas separator module using the single-piece housing coupling and the seal section is joined directly to the motor module using a second single-piece housing coupling.

21. The electric submersible pump assembly of claim 17 wherein the gas separator is joined directly to the seal section using the single-piece housing coupling and wherein the seal section is joined directly to the motor module using a second single-piece housing coupling.

22. The electric submersible pump assembly of claim 21 wherein the pump module is joined directly to the gas separator module using a third single-piece housing coupling.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2024
From: EXTRACT MANAGEMENT COMPANY, LLC; EXTRACT PRODUCTION SERVICES LLC; EXTRACT SURFACE SYSTEMS LLC
To: EXTRACT COMPANIES LLC
Reel/Frame 066028/0513 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2020
From: EXTRACT PRODUCTION SERVICES, LLC
To: EXTRACT MANAGEMENT COMPANY, LLC
Reel/Frame 052812/0701 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2020
From: CRANE, MITCHELL LEE; GUALDRON, JOSE MAURICIO OVIEDO
To: EXTRACT PRODUCTION SERVICES, LLC
Reel/Frame 051707/0389 →
Continuity (3)
Continuation 16282831 · Feb 22, 2019
Provisional Application 62634423 · Feb 23, 2018
Related Publication 20200173264A1 · Jun 4, 2020
Cited By (2)
US 12,410,809 US 12,716,417