IP Library Granted Patent US 10,358,035
Granted Patent B2
US 10,358,035 · App. 15/411,129 · Granted Jul 23, 2019

System and method for powering a hydraulic pump

Inventors: Robert Douglas Cryer (Erie, PA); George Wnukoski (Erie, PA); David Kamensky (West Chester, OH); Ramesh Krishnan (Mississauga, CA); William Halli (Lawrence Park, PA); Alexey Gaev (Erie, PA); Ryan Martorella (Erie, PA); Tarun Shivlani (Erie, PA)
Assignee: General Electric Company
B60L1/003B60K1/04B60K6/485B60L11/12F04B17/03F04B17/06F04B47/02H02K7/1815H02K7/1823H02P9/42H02P27/06E21B43/26
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Quick Facts
Patent No.
US 10,358,035
App. No.
15/411,129
Granted
Jul 23, 2019
Kind
B2
Abstract

A hydraulic pump powering system includes a mobile vehicle, a first electric current generator device, and one or more electric pump motors. The mobile vehicle has first and second prime movers. The first electric current generator device is disposed onboard the mobile vehicle and is configured to be mechanically coupled with the first prime mover to convert movement created by the first prime mover into first electric current. The one or more electric pump motors are configured to receive the first electric current to power a hydraulic pump. The second prime mover is configured to generate movement that is converted into a propulsive force that propels the mobile vehicle. The one or more electric pump motors are configured to receive the first electric current in order to power the hydraulic pump to pump a fluid into a pumping location located off-board the mobile vehicle.

Claims (35)

1. A system comprising:

an electric current generator device configured to be disposed onboard a self-propelling mobile vehicle having a prime mover and one or more electric traction motors, the electric current generator device configured to be mechanically coupled with the prime mover, the electric current generator device configured to convert movement of the prime mover into a first electric current;

a control unit configured to be disposed onboard the self-propelling mobile vehicle and to convert the first electric current from the electric current generator device into a modified electric current;

one or more electric pump motors configured to be disposed onboard the self-propelling mobile vehicle and configured to power a hydraulic pump disposed off-board the self-propelling mobile vehicle to pump a fluid into a pumping location located off-board the self-propelling mobile vehicle,

wherein the control unit is configured to control when the modified electric current is supplied to the one or more electric traction motors to propel the self-propelling mobile vehicle and when the modified electric current is supplied to the one or more electric pump motors to power the hydraulic pump.

2. The system of claim 1 , wherein the one or more electric pump motors are configured to be powered by the modified electric current to generate movement that powers the hydraulic pump without being mechanically coupled with the prime mover by one or more gear or transmission.

3. The system of claim 1 , wherein the electric current generator device includes an alternator configured to convert the movement created by the prime mover into the first electric current, wherein the first electric current comprises an alternating electric current.

4. The system of claim 1 , wherein the prime mover comprises at least one of an engine or a turbine, and wherein the electric current generator device is configured to be coupled with a shaft connected to the prime mover to convert rotation of the shaft by the at least one of the engine or the turbine into the first electric current.

5. The system of claim 1 , wherein the control unit is configured to control a frequency of the first electric current to create the modified electric current in order to control a speed at which the one or more electric pump motors operate.

6. The system of claim 1 , wherein the control unit is configured to convey at least a portion of the modified electric current to an energy storage device disposed onboard the mobile vehicle that also powers the one or more traction motors.

7. The system of claim 1 , wherein the one or more electric pump motors are configured to power the hydraulic pump to pump fracturing fluid into a drill site at the pumping location.

8. A system comprising:

an electric current generator device configured to be mechanically coupled with a prime mover of a mobile vehicle having one or more electric traction motors, the electric current generator device configured to generate first electric energy having a first electric characteristic;

one or more electric pump motors configured to be disposed onboard the mobile vehicle; and

a control unit configured to be disposed onboard the mobile vehicle, wherein the control unit is further configured to convert the first electric energy from the generator into second electric energy having a different, second electric characteristic, the one or more electric pump motors further configured to receive the second electric energy and to power a hydraulic pump using the second electric energy, and the control unit further configured to control a frequency of the second electric energy that is supplied to the one or more electric pump motors in order to control flow of a fluid that is pumped into a pumping location located off-board of the mobile vehicle by the hydraulic pump, and the control unit is further configured to convert the first electric energy from the generator into third electric energy having a different, third electric characteristic for supply to the one or more electric traction motors, the third electric characteristic configured for powering the one or more electric traction motors to propel the mobile vehicle.

9. A method comprising:

converting movement of a prime mover disposed onboard a mobile vehicle into an electric current;

directing the electric current to one or more electric traction motors of the mobile vehicle to propel the mobile vehicle during a first time period; and

directing the electric current to one or more electric pump motors disposed onboard the mobile vehicle to power a hydraulic pump disposed off-board the mobile vehicle during a second time period, wherein the electric current is directed to the one or more electric pump motors to pump a fluid into a pumping location that is located off-board the mobile vehicle.

10. The method of claim 9 , wherein converting the movement of the prime mover into the first electric current includes creating an alternating current from rotation of a shaft connected to the prime mover that comprises at least one of an engine or a turbine.

11. The method of claim 9 , further comprising modifying a frequency of the electric current to control a speed at which the one or more electric pump motors operate.

12. The method of claim 9 , further comprising directing the electric current to an energy storage device disposed onboard the mobile vehicle that also powers the one or more traction motors.

13. The method of claim 9 , wherein directing the electric current to the one or more electric pump motors includes powering the hydraulic pump to pump fracturing fluid into a drill site at the pumping location.

14. The method of claim 9 , wherein the first and second time periods are non-overlapping time periods.

15. A system comprising:

an electric current generator device configured to be onboard a mobile vehicle and mechanically coupled with a prime mover of the vehicle to convert movement created by the prime mover into electric current;

a control unit configured to receive the electric current and to modify the electric current into a first modified current;

one or more electric pump motors configured to be onboard the vehicle and configured to receive the first modified current, wherein the control unit is configured to output the first modified current at a power level of at least 700 kilowatts for powering the one or more electric pump motors; and

one or more electric traction motors configured to be onboard the vehicle, wherein the control unit is further configured to modify the electric current into a different, second modified current, the one or more electric traction motors further configured to receive the second modified current for operating to propel the mobile vehicle;

wherein the one or more electric pump motors are configured generate mechanical power in excess of 2500 horsepower (HP) for powering at least one hydraulic pump to pump hydraulic fracturing fluid into a pumping location located off-board the mobile vehicle at a rate of at least 2 gallons per minute per revolution of the at least one hydraulic pump.

16. The system of claim 15 , wherein the control unit is configured to output the first modified current at a voltage of at least 400 volts for powering the one or more electric pump motors.

17. The system of claim 15 , wherein the electric current generator device, the control unit, and the one or more electric pump motors disposed on the mobile vehicle are configured to power the at least one hydraulic pump to pump at least 200 gallons per minute.

18. The system of claim 15 , wherein the first modified current is direct current, and the second modified current is alternating current.

19. The system of claim 15 , wherein control unit is configured to output the first modified current for powering the one or more electric pump motors during a first time period, and to output the second modified current for powering the one or more traction motors during a second time period that non-overlaps with the first time period.

20. The system of claim 8 , wherein control unit is configured to output the second electric energy for powering the one or more electric pump motors during a first time period, and to output the third electric energy for powering the one or more traction motors during a second time period that non-overlaps with the first time period.

Continuity (3)
Division 14641422 · Mar 8, 2015
Division 13541980 · Jul 5, 2012
Related Publication 20170129338A1 · May 11, 2017
Cited By (22)
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