IP Library Granted Patent US 12,084,952
Granted Patent B2
US 12,084,952 · App. 18/512,755 · Granted Sep 10, 2024

Electric powered hydraulic fracturing pump system with single electric powered multi-plunger fracturing pump

Inventors: Lon Robinson (Willow Park, TX); Jared Oehring (Willow Park, TX); Brandon N. Hinderliter (Willow Park, TX)
Assignee: U.S. Well Services, LLC
E21B43/17E21B43/127
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Quick Facts
Patent No.
US 12,084,952
App. No.
18/512,755
Granted
Sep 10, 2024
Kind
B2
Abstract

A hydraulic fracturing system includes a support structure having a first area at a first height and a second area at a second height, the first and second areas adjacent one another. The system also includes an electric powered, multi-plunger pump with an odd number of plungers, arranged in the first area, the electric powered pump coupled to a well, via outlet piping, and powered by at least one electric motor, also arranged in the first area. The system further includes a variable frequency drive (VFD), arranged in the second area, connected to the at least one electric motor, the VFD configured to control at least a speed of the at least one electric motor. The system also includes a transformer, arranged in the second area, the transformer positioned within an enclosure with the VFD, the transformer distributing power to the electric pump.

Claims (45)

1. A mobile hydraulic fracturing system, comprising:

a trailer having a front end, a back end, a first area at a first height, and a second area at a second height that is greater than the first height, wherein at least a portion of the first area resides above a rear axle group of the trailer, and the second area resides forward of the first area;

a hydraulic fracturing pump comprising an odd number of plungers greater than five, the hydraulic fracturing pump supported by the first area of the trailer and being configured to pump hydraulic fracturing fluid;

an electric motor that drives the hydraulic fracturing pump, the electric motor supported by the first area of the trailer;

an enclosure supported by the second area of the trailer;

a variable frequency drive (VFD) housed in the enclosure, the VFD being operably connected to the electric motor to control a speed of the electric motor; and

a three-phase transformer configured to distribute power to the electric motor.

2. The hydraulic fracturing system of claim 1 , comprising a slide out platform that is extendable from the first area of the trailer to allow maintenance, wherein the platform is aligned with at least one of the pump or the motor.

3. The hydraulic fracturing system of claim 1 , comprising an access platform that provides access for an operator to enter the enclosure in the second area.

4. The hydraulic fracturing system of claim 1 , wherein the enclosure comprises a cooling system operable to cool the VFD.

5. The hydraulic fracturing system of claim 4 , wherein the cooling system is a liquid cooling system.

6. The hydraulic fracturing system of claim 1 , wherein the hydraulic fracturing pump is a septuplex pump.

7. The hydraulic fracturing system of claim 1 , wherein the hydraulic fracturing pump is a 9-plunger pump.

8. The hydraulic fracturing system of claim 1 , wherein the hydraulic fracturing pump is an 11-plunger pump.

9. The hydraulic fracturing system of claim 1 , wherein:

the electric motor resides forward of the hydraulic fracturing pump;

the enclosure resides forward of the electric motor; and

the system includes an open space between the enclosure and the electric motor.

10. The hydraulic fracturing system of claim 9 , wherein:

the hydraulic fracturing pump and the electric motor are both supported only by the first area of the trailer; and

the enclosure is supported by both the first and second areas of the trailer.

11. The hydraulic fracturing system of claim 9 , wherein the trailer is a single drop trailer comprising a gooseneck area, and the system comprises a motor control center on the gooseneck area of the trailer.

12. The hydraulic fracturing system of claim 1 , comprising a human machine interface in the enclosure.

13. The hydraulic fracturing system of claim 1 , wherein the three-phase transformer is housed in the enclosure.

14. A mobile hydraulic fracturing method, comprising:

pumping hydraulic fracturing fluid by operation of a hydraulic fracturing pump, the hydraulic fracturing pump comprising an odd number of plungers greater than five, wherein the hydraulic fracturing pump is supported by a first area of a trailer, the trailer having a front end, a back end, the first area at a first height, and a second area at a second height that is greater than the first height, wherein at least a portion of the first area resides above a rear axle group of the trailer, and the second area resides forward of the first area;

driving the hydraulic fracturing pump by operation of an electric motor supported by the first area of the trailer;

controlling a speed of the electric motor by operation of a variable frequency drive (VFD) housed in an enclosure supported by the second area of the trailer; and

providing electric power to the electric motor from a three-phase transformer, wherein the three-phase transformer steps down a voltage of the electric power received from a power source.

15. The hydraulic fracturing method of claim 14 , wherein the trailer comprises:

a slide out platform that is extendable from the first area of the trailer to allow maintenance, wherein the platform is aligned with at least one of the pump or the motor; and

an access platform that provides access for an operator to enter the enclosure.

16. The hydraulic fracturing method of claim 14 , comprising cooling the VFD by operation of a cooling system of the enclosure.

17. The hydraulic fracturing method of claim 14 , wherein the hydraulic fracturing pump is a septuplex pump.

18. The hydraulic fracturing method of claim 14 , wherein the hydraulic fracturing pump is a 9-plunger pump.

19. The hydraulic fracturing method of claim 14 , wherein the hydraulic fracturing pump is an 11-plunger pump.

20. The hydraulic fracturing method of claim 14 , wherein:

the electric motor resides forward of the hydraulic fracturing pump;

the enclosure resides forward of the electric motor; and

the system includes an open space between the enclosure and the electric motor.

21. The hydraulic fracturing method of claim 20 , wherein:

the hydraulic fracturing pump and the electric motor are both fully supported by the first area of the trailer; and

the enclosure is supported by both the first and second areas of the trailer.

22. The hydraulic fracturing method of claim 20 , wherein the trailer is a single drop trailer comprising a gooseneck area, and the system comprises a motor control center on the gooseneck area of the trailer.

23. The hydraulic mobile fracturing method of claim 14 , wherein the three-phase transformer is housed in the enclosure.

Assignments (2)
SECURITY INTEREST Recorded Jul 9, 2026
From: PROFRAC SERVICES, LLC; PROFRAC HOLDINGS II, LLC; U.S. WELL SERVICES, LLC; U.S. WELL SERVICES HOLDINGS, LLC; BEST PUMP AND FLOW LLC; PROFRAC HOLDINGS, LLC
To: ECLIPSE BUSINESS CAPITAL LLC
Reel/Frame 075942/0765 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2023
From: ROBINSON, LON; OEHRING, JARED; HINDERLITER, BRANDON
To: U.S. WELL SERVICES, LLC
Reel/Frame 065616/0048 →
Continuity (4)
Continuation 17959465 · Oct 4, 2022
Continuation 17060647 · Oct 1, 2020
Provisional Application 62910163 · Oct 3, 2019
Related Publication 20240084680A1 · Mar 14, 2024
Cited By (12)
US 12,259,434 US 12,272,987 US 12,281,648 US 12,312,930 US 12,313,059 US 12,320,344 US 12,326,074 US 12,331,626 US 12,516,591 US 12,624,622 US 12,651,911 US 12,735,969