IP Library Granted Patent US 10,598,258
Granted Patent B2
US 10,598,258 · App. 16/210,807 · Granted Mar 24, 2020

Multi-plunger pumps and associated drive systems

Inventors: Jared Oehring (Houston, TX); Lon Robinson (Houston, TX); Brandon N. Hinderliter (Houston, TX); Alexander James Christinzio (Houston, TX)
Assignee: U.S. Well Services, LLC
F16H3/52E21B37/00E21B43/20E21B43/26F04B15/02F04B17/03F04B23/04F04B47/02F04B49/20F16H39/02F16H2200/2007
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Quick Facts
Patent No.
US 10,598,258
App. No.
16/210,807
Granted
Mar 24, 2020
Kind
B2
Abstract

A hydraulic fracturing system for fracturing a subterranean formation is described according to various embodiments. In an embodiment, the system can include a multi-plunger hydraulic fracturing pump fluidly connected to a well associated with the subterranean formation, the multi-plunger pump configured to pump fluid into a wellbore associated with the well at a high pressure so that the fluid passes from the wellbore into the subterranean formation and fractures the subterranean formation. In an embodiment, a plurality of motors can be positioned to power the multi-plunger pump, and a planetary gear train can have a plurality of pinion gears in rotational contact with each of the plurality of motors. In an embodiment, a gear ratio of the planetary gear train and a speed at which the plurality of motors operates can be selected so as to limit a maximum pump speed associated with the multi-plunger pump.

Claims (37)

1. A hydraulic fracturing system for fracturing a subterranean formation comprising:

a multi-plunger hydraulic fracturing pump fluidly connected to a well associated with the subterranean formation, the multi-plunger pump configured to pump fluid into a wellbore associated with the well at a high pressure so that the fluid passes from the wellbore into the subterranean formation and fractures the subterranean formation;

a plurality of motors positioned to simultaneously power the multi-plunger pump; and

a planetary gear train having a plurality of input pinion gears in rotational contact with each of the plurality of motors,

wherein a gear ratio of the planetary gear train and a speed at which the plurality of motors operates are selected so as to limit a maximum pump speed associated with the multi-plunger pump.

2. The system of claim 1 , the system further comprising a plurality of speed reduction gearboxes positioned between the plurality of input pinion gears and the plurality of motors so as to achieve a desired pump rate.

3. The system of claim 1 , wherein the plurality of motors comprises one of a plurality of electric motors or a plurality of hydraulic motors.

4. The system of claim 1 , wherein the maximum pump speed correlates to a critical plunger speed associated with the multi-plunger hydraulic fracturing pump.

5. The system of claim 1 , wherein the maximum pump speed is 5% or less over a critical plunger speed associated with the multi-plunger hydraulic fracturing pump.

6. The system of claim 1 , wherein the multi-plunger hydraulic fracturing pump comprises an odd number of plungers greater than or equal to five plungers.

7. The system of claim 6 , wherein a stroke length of each of the plungers associated with the multi-plunger hydraulic fracturing pump is selected to inversely relate to a pump speed associated with the multi-plunger hydraulic fracturing pump so as to achieve a predetermined flow rate.

8. The system of claim 1 , further comprising:

a variable frequency drive (VFD) connected to the plurality of motors to control the speed of the plurality of motors, wherein the VFD is positioned to accelerate or decelerate pump rotational speeds associated with the multi-plunger hydraulic fracturing pump.

9. The system of claim 8 , wherein the VFD comprises a plurality of VFDs and wherein the plurality of VFDs are configured to share a load required to power the multi-plunger hydraulic fracturing pump.

10. The system of claim 9 , wherein the plurality of VFDs are configured to automatically shut off in the event of an overpressure event with respect to the multi-plunger hydraulic fracturing pump.

11. A hydraulic fracturing system for fracturing a subterranean formation comprising:

a multi-plunger hydraulic fracturing pump fluidly connected to a well associated with the subterranean formation, the multi-plunger pump configured to pump fluid into a wellbore associated with the well at a high pressure so that the fluid passes from the wellbore into the subterranean formation and fractures the subterranean formation;

a plurality of motors positioned to simultaneously power the multi-plunger pump;

a variable frequency drive connected to the plurality of motors to control the speeds of the plurality of motors; and

a planetary gear train having a plurality of input pinion gears in rotational contact with each of the plurality of motors,

wherein a gear ratio of the planetary gear train and a speed at which the plurality of motors operates are selected so as to limit a maximum pump speed associated with the multi-plunger pump.

12. The system of claim 11 , the system further comprising a plurality of speed reduction gearboxes positioned between the plurality of input pinion gears and the plurality of motors so as to achieve a desired pump rate.

13. The system of claim 11 , wherein the plurality of motors comprises one of a plurality of electric motors or a plurality of hydraulic motors.

14. The system of claim 11 , wherein the maximum pump speed correlates to a critical plunger speed associated with the multi-plunger hydraulic fracturing pump.

15. A method for pumping fluid into a wellbore associated with a subterranean formation, the method comprising:

fluidly connecting a multi-plunger hydraulic fracturing pump to a well associated with the subterranean formation such that the multi-plunger pump pumps fluid into the wellbore at a high pressure so that fluid passes from the wellbore into the subterranean formation and fractures the subterranean formation;

simultaneously powering the multi-plunger pump with a plurality of motors;

providing a planetary gear train having a plurality of input pinion gears in rotational contact with each of the plurality of motors so as to translate power from the plurality of motors into a desired pump rate of the multi-plunger pump.

16. The method of claim 15 , further comprising:

positioning a plurality of speed reduction gearboxes between the plurality of input pinion gears and the plurality of motors so as to achieve the desired pump rate.

17. The method of claim 15 , wherein the plurality of motors comprises one of a plurality of electric motors or a plurality of hydraulic motors.

18. The method of claim 15 , wherein the maximum pump speed correlates to a critical plunger speed associated with the multi-plunger hydraulic fracturing pump.

19. The method of claim 15 , further comprising:

connecting a variable frequency drive (VFD) to the plurality of motors so as to control the speed of the plurality of motors, wherein the VFD is positioned to accelerate or decelerate pump rotational speeds associated with the multi-plunger hydraulic fracturing pump.

20. The method of claim 19 , the method further comprising:

detecting an overpressure event with respect to the multi-plunger hydraulic fracturing pump; and

automatically shutting off the VFD.

Assignments (11)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jan 3, 2024
From: FTS INTERNATIONAL SERVICES, LLC; U.S. WELL SERVICES, LLC; PROFRAC SERVICES, LLC; U.S. WELL SERVICES HOLDINGS, LLC; BEST PUMP AND FLOW, LLC
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 066186/0752 →
CHANGE OF NAME Recorded Dec 27, 2023
From: U.S. WELL SERVICES, INC.
To: U.S. WELL SERVICES HOLDINGS, LLC
Reel/Frame 066127/0981 →
SECURITY INTEREST Recorded Dec 16, 2022
From: U.S. WELL SERVICE HOLDINGS, LLC; USWS HOLDINGS LLC; U.S. WELL SERVICES, LLC; USWS FLEET 10, LLC; USWS FLEET 11, LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 062142/0927 →
SECURITY INTEREST Recorded Nov 2, 2022
From: U.S. WELL SERVICES, LLC
To: PIPER SANDLER FINANCE LLC
Reel/Frame 061875/0001 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME NO. 49111/0583 Recorded Nov 2, 2022
From: BANK OF AMERICA, N.A.
To: U.S. WELL SERVICES, LLC
Reel/Frame 061875/0260 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME NO. 49107/0392 Recorded Nov 1, 2022
From: CLMG CORP.
To: U.S. WELL SERVICES, LLC
Reel/Frame 061835/0778 →
SECURITY INTEREST Recorded May 8, 2019
From: U.S. WELL SERVICES, LLC
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 049111/0583 →
SECURITY INTEREST Recorded May 7, 2019
From: U.S. WELL SERVICES, LLC
To: CLMG CORP.
Reel/Frame 049107/0392 →
TERMINATION AND RELEASE OF PATENT SECURITY AGREEMENT RECORDED AT REEL 048818/FRAME 0520 Recorded May 7, 2019
From: U.S. BANK NATIONAL ASSOCIATION
To: U.S. WELL SERVICES, LLC
Reel/Frame 049109/0610 →
TERMINATION AND RELEASE OF PATENT SECURITY AGREEMENT RECORDED AT REEL 048041/FRAME 0605 Recorded May 7, 2019
From: PIPER JAFFRAY FINANCE, LLC
To: U.S. WELL SERVICES, LLC
Reel/Frame 049110/0319 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2019
From: OEHRING, JARED; ROBINSON, LON; HINDERLITER, BRANDON N.; CHRISTINZIO, ALEXANDER JAMES
To: U.S. WELL SERVICES, INC.
Reel/Frame 048028/0091 →
Continuity (2)
Provisional Application 62594912 · Dec 5, 2017
Related Publication 20190249754A1 · Aug 15, 2019
Cited By (24)
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