IP Library Granted Patent US 12,305,495
Granted Patent B2
US 12,305,495 · App. 18/543,805 · Granted May 20, 2025

Systems and methods for exchanging fracturing components of a hydraulic fracturing unit

Inventors: Tony Yeung (The Woodlands, TX); Ricardo Rodriguez-Ramon (The Woodlands, TX); Joseph Foster (The Woodlands, TX)
Assignee: BJ Energy Solutions, LLC
E21B43/2607E21B41/005E21B43/267E21B47/008E21B47/07E21B47/095E21B49/0875
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Quick Facts
Patent No.
US 12,305,495
App. No.
18/543,805
Filed
Dec 18, 2023
Granted
May 20, 2025
Kind
B2
Art Unit
3679
USPC
166/308.1
Abstract

Systems and methods for exchanging fracturing components of a hydraulic fracturing unit and may include an exchangeable fracturing component section to facilitate quickly exchanging a fracturing component of a hydraulic fracturing unit. The fracturing component section may include a section frame including a base, and a fracturing component connected to the base. The fracturing component section also may include a component electrical assembly and a component fluid assembly connected to the section frame. The fracturing component section further may include a coupling plate connected to the section frame. The fracturing component section also may include one or more of a plurality of quick-connect electrical couplers or a plurality of quick-connect fluid couplers connected to a coupling plate. The quick-connect electrical and fluid couplers may be positioned to receive respective electrical and fluid connections of the component electrical and fluid assemblies and connect to other portions of the hydraulic fracturing unit.

Claims (46)

1. A hydraulic fracturing unit comprising:

a platform;

a dual-shaft gas turbine engine, a transmission, and a hydraulic fracturing pump mounted on the platform, wherein the dual-shaft gas turbine engine, the transmission, and the hydraulic fracturing pump are aligned on the platform such that the dual-shaft gas turbine engine, the transmission, and the hydraulic fracturing pump are positioned adjacent to one another;

an engine control module including a first plurality of sensors, the first plurality of sensors configured to generate signals indicative of parameters associated with operation of the dual-shaft gas turbine engine, the engine control module connected to a terminal in an engine terminal unit located on the platform, wherein the engine terminal unit is configured to communicate with a supervisory control system;

a second plurality of sensors configured to generate signals indicative of parameters associated with operation of the hydraulic fracturing pump, wherein each of the second plurality of sensors is connected to a fracturing pump terminal unit of the hydraulic fracturing pump, wherein the fracturing pump terminal unit is configured to communicate with the supervisory control system via a single communication cable; and

an auxiliary engine connected to the platform, the auxiliary engine configured to supply power to drive one or more lubrication pumps located on the platform.

2. The hydraulic fracturing unit of claim 1 , wherein the transmission comprises a reduction gearbox and a driveshaft and the dual-shaft gas turbine engine is cantilever-mounted to the reduction gearbox.

3. The hydraulic fracturing unit of claim 1 , wherein the transmission comprises a multi-gear transmission.

4. The hydraulic fracturing unit of claim 1 , wherein the platform is a trailer.

5. The hydraulic fracturing unit of claim 4 , wherein the transmission is mounted to the platform via a mount comprising a base plate configured to be connected to a support frame located on the trailer and an upper plate configured to be connected to the transmission.

6. The hydraulic fracturing unit of claim 5 , wherein an absorbing portion is disposed between the base plate and the upper plate, the absorbing portion configured to compress and expand as load changes on the mount.

7. The hydraulic fracturing unit of claim 1 , further comprising a transmission terminal unit located on the platform and configured to communicate with the supervisory control system, the transmission terminal unit including a third plurality of sensors configured to generate signals indicative of parameters associated with operation of the transmission.

8. The hydraulic fracturing unit of claim 7 , wherein the second plurality of sensors and the third plurality of sensors each include a lube pressure sensor and a lube temperature sensor.

9. The hydraulic fracturing unit of claim 7 , wherein the engine terminal unit is connected to the supervisory control system via a second single communication cable and the transmission terminal unit is connected to the supervisory control system via a third single communication cable.

10. The hydraulic fracturing unit of claim 1 , wherein:

each of the second plurality of sensors is connected to a respective one of a plurality of terminals of the fracturing pump terminal unit, each of the plurality of terminals in the fracturing pump terminal unit are connected to a single first electrical coupler configured to be coupled to a single second electrical coupler, and

the single communication cable includes the single second electrical coupler.

11. The hydraulic fracturing unit of claim 10 , wherein:

the engine control module is connected to the terminal in the engine terminal unit via a single second communication cable, and

the engine terminal unit is configured to communicate with the supervisory control system via a single third communication cable.

12. The hydraulic fracturing unit of claim 1 , wherein:

each of the second plurality of sensors is connected to the fracturing pump terminal unit via a respective one of a plurality of second communication cables.

13. A hydraulic fracturing system, comprising;

a plurality of hydraulic fracturing units, each hydraulic fracturing unit comprising:

a platform;

a dual-shaft gas turbine engine, a transmission, and a hydraulic fracturing pump mounted on the platform, wherein the dual-shaft gas turbine engine, the transmission, and the hydraulic fracturing pump are aligned on the platform such that the dual-shaft gas turbine engine, the transmission, and the hydraulic fracturing pump are positioned adjacent to one another;

an engine control module including a first plurality of sensors, the first plurality of sensors configured to generate signals indicative of parameters associated with operation of the dual-shaft gas turbine engine, the engine control module connected to a terminal in an engine terminal unit located on the platform;

a second plurality of sensors configured to generate signals indicative of parameters associated with operation of the hydraulic fracturing pump, wherein each of the second plurality of sensors is connected to a fracturing pump terminal unit of the hydraulic fracturing pump; and

an auxiliary engine connected to the platform, the auxiliary engine configured to supply power to drive one or more lubrication pumps located on the platform; and

a supervisory control system in communication with the engine terminal unit and the fracturing pump terminal unit of each of the plurality of hydraulic fracturing units, wherein the fracturing pump terminal unit is configured to communicate with the supervisory control system via a single communication cable.

14. The hydraulic fracturing system of claim 13 , wherein the transmission comprises a reduction gearbox and a driveshaft and the dual-shaft gas turbine engine is cantilever-mounted to the reduction gearbox.

15. The hydraulic fracturing system of claim 13 , wherein the transmission comprises a multi-gear transmission.

16. The hydraulic fracturing system of claim 13 , wherein the platform is a trailer.

17. The hydraulic fracturing system of claim 16 , wherein the transmission is mounted to the platform via a mount comprising a base plate configured to be connected to a support frame located on the trailer and an upper plate configured to be connected to the transmission.

18. The hydraulic fracturing system of claim 17 , wherein an absorbing portion is disposed between the base plate and the upper plate, the absorbing portion configured to compress and expand as load changes on the mount.

19. The hydraulic fracturing system of claim 13 , further comprising a transmission terminal unit located on the platform and configured to communicate with the supervisory control system, the transmission terminal unit including a third plurality of sensors configured to generate signals indicative of parameters associated with operation of the transmission.

20. The hydraulic fracturing system of claim 19 , wherein the second plurality of sensors and the third plurality of sensors each include a lube pressure sensor and a lube temperature sensor.

21. A hydraulic fracturing unit comprising:

a trailer;

a dual-shaft gas turbine engine, a transmission, and a hydraulic fracturing pump mounted on the trailer, wherein the dual-shaft gas turbine engine, the transmission, and the hydraulic fracturing pump are aligned on the trailer such that the dual-shaft gas turbine engine, the transmission, and the hydraulic fracturing pump are positioned adjacent to one another, wherein the transmission comprises a reduction gearbox and a driveshaft and the dual-shaft gas turbine engine is cantilever-mounted to the reduction gearbox;

an engine control module including a first plurality of sensors, the first plurality of sensors configured to generate signals indicative of parameters associated with operation of the dual-shaft gas turbine engine, the engine control module connected to a terminal in an engine terminal unit located on the trailer, wherein the engine terminal unit is configured to communicate with a supervisory control system;

a second plurality of sensors configured to generate signals indicative of parameters associated with operation of the hydraulic fracturing pump, wherein each of the second plurality of sensors is connected to a fracturing pump terminal unit of the hydraulic fracturing pump, wherein the fracturing pump terminal unit is configured to communicate with the supervisory control system; and

an auxiliary diesel engine mounted on the trailer, the auxiliary diesel engine configured to supply power to drive one or more lubrication pumps located on the trailer.

22. The hydraulic fracturing unit of claim 21 , wherein the transmission is mounted to the trailer via a mount comprising a base plate configured to be connected to a support frame located on the trailer and an upper plate configured to be connected to the transmission.

23. The hydraulic fracturing unit of claim 22 , wherein an absorbing portion is disposed between the base plate and the upper plate, the absorbing portion configured to compress and expand as load changes on the mount.

24. The hydraulic fracturing unit of claim 21 , wherein the fracturing pump terminal unit is configured to communicate with the supervisory control system via a single communication cable.