Power sources and transmission networks for auxiliary equipment onboard hydraulic fracturing units and associated methods

US11530602B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11530602-B2
Application numberUS-202117555815-A
CountryUS
Kind codeB2
Filing dateDec 20, 2021
Priority dateSep 13, 2019
Publication dateDec 20, 2022
Grant dateDec 20, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Embodiments of systems and methods disclosed provide a hydraulic fracturing unit that includes a reciprocating plunger pump configured to pump a fracturing fluid and a powertrain configured to power the reciprocating plunger pump. The powertrain includes a prime mover and a drivetrain, the prime mover including a gas turbine engine. The hydraulic fracturing unit also includes auxiliary equipment configured to support operation of the hydraulic fracturing unit including the reciprocating plunger pump and the powertrain. A power system is configured to power the auxiliary equipment. The power system includes a power source and a power network. The power source is configured to generate power for the auxiliary equipment. The power network is coupled to the power source and the auxiliary equipment, and configured to deliver the power generated by the power source to the auxiliary equipment. Associated systems including a plurality of hydraulic fracturing units are also provided.

First claim

Opening claim text (preview).

What is claimed is: 1. A system for fracturing a well, the system comprising: one or more hydraulic fracturing units, each of the one or more hydraulic fracturing units comprising: a chassis; a reciprocating plunger pump connected to the chassis and configured to pump a fracturing fluid; a powertrain connected to the chassis and configured to power the reciprocating plunger pump, the powertrain including a direct drive gas turbine engine and a drivetrain, the direct drive gas turbine engine operable by use of two or more different types of fuel; and auxiliary equipment located onboard the chassis, the auxiliary equipment driven by one or more electric motors to support operation of the hydraulic fracturing unit including the reciprocating plunger pump and the powertrain; one or more electric power arrangements configured to power the auxiliary equipment of each of the one or more hydraulic fracturing units, each electric power arrangement of the one or more electric power arrangements comprising an engine-generator set configured to generate electric power; an electric power network configured to deliver electric power generated by the engine-generator set of at least one electric power arrangement of the one or more electric power arrangements to the one or more electric motors of at least one hydraulic fracturing unit of the one or more hydraulic fracturing units, the electric power network being coupled to the engine-generator set of the at least one electric power arrangement and the one or more electric motors of the at least one hydraulic fracturing unit, the electric power network being switchably connectable to a utility power grid, a battery bank, or another engine-generator set and being configured to deliver electric power generated by the engine-generator set of the at least one electric power arrangement to the one or more electric motors of the at least hydraulic fracturing unit to drive the auxiliary equipment of the at least one hydraulic fracturing unit and to be switchably connected to the utility power grid, the battery bank, or the another engine-generator set to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to a failure or fault of the engine-generator set of the at least one electric power arrangement; and a manifold connected to each reciprocating plunger pump of the one or more hydraulic fracturing units, the manifold configured to deliver fracturing fluid from the reciprocating plunger pump to the well, and wherein the electric power network comprises electric buses affixed to the manifold and connecting the one or more hydraulic fracturing units to the one or more electric power arrangements to power the one or more hydraulic fracturing units. 2. The system of claim 1 , wherein each engine-generator set includes a diesel engine and an electric motor generator, the diesel engine configured to drive the electric motor generator to generate the electric power. 3. The system of claim 1 , wherein each engine-generator set includes a gas turbine engine and an electric generator, the gas turbine engine configured to drive the electric generator to generate the electric power. 4. TThe system of claim 1 , wherein the one or more electric power arrangements further comprises a connection to the utility power grid, and the electric power network is configured to switchably connect the utility power grid to the one or more electric motors of the at least one hydraulic fracturing unit to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to the failure or fault of the engine-generator set of the at least one electric power arrangement. he system of claim 1 , wherein the one or more electric power arrangements further comprises a connection to the utility power grid, and the electric power network of the auxiliary equipment of the one or more hydraulic fracturing units is configured to switchably connect the utility power grid to the one or more electric motors of the one or more hydraulic fracturing units to deliver power to the one or more electric motors responsive to the failure or fault of the engine-generator set of an associated one of the one or more electric power arrangements. 5. The system of claim 1 , wherein the battery bank is chargeable from power generated by the engine- generator set of the one or more electric power arrangements, and wherein the electric power network is configured to switchably connect the battery bank to the one or more electric motors of the at least one hydraulic fracturing unit to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to the failure or fault of the engine-generator set of the at least one electric power arrangement. 6. The system of claim 1 , wherein the one or more electric power arrangements further comprises a connection to a second engine-generator set of the one or more electric power arrangements, and the electric power network is configured to switchably connect the second engine-generator set to the one or more electric motors of the at least one hydraulic fracturing unit to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to the failure or fault of the engine-generator set of the at least one electric power arrangement. 7. The system of claim 1 , wherein the one or more electric power arrangements include a plurality of electric power arrangements, each of the plurality of electric power arrangements being connected to a chassis of a respective one of the one or more hydraulic fracturing units. 8. The system of claim 7 , wherein the plurality of electric power arrangements are connected to another, and wherein the electric power network is configured to switchably connect the engine-generator set of another of the plurality of electric power arrangements to the one or more electric motors of the at least one hydraulic fracturing unit to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to the failure or fault of the engine-generator set of the at least one electric power arrangement. 9. The system of claim 7 , further comprising the battery bank connected to the plurality of electric power arrangements, each engine-generator set configured to generate electric power from which the battery bank is chargeable, and wherein the electric power network is configured to switchably connect the battery bank to the one or more electric motors of at least one hydraulic fracturing unit to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to the failure or fault of the engine-generator set of the at least one electric power arrangement. 10. The system of claim 9 , wherein the battery bank is configured to be connected to the utility power grid, and the plurality of electric power arrangements are switchably connectable to the utility power grid via the battery bank. 11. The system of claim 9 , wherein the electric buses of the electric power network connect the plurality of electric power arrangements to the battery bank. 12. The system of claim 1 , further comprising the battery bank connected to the one or more electric power arrangements, wherein the electric power network is configured to switchably connect the battery bank to the one or more electric motors of the at least one hydraulic fracturing unit to deliver power to the one or more electric motors of the at least one hydraulic fracturing unit responsive to the failure or fault of the engine-generator set of the at least one electr

Assignees

Inventors

Classifications

  • Level · CPC title

  • the means being mechanical · CPC title

  • Maintaining oil level (level control in general G05D9/00) · CPC title

  • Surface equipment specially adapted for fracturing operations · CPC title

  • driven by internal-combustion engines · CPC title

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What does patent US11530602B2 cover?
Embodiments of systems and methods disclosed provide a hydraulic fracturing unit that includes a reciprocating plunger pump configured to pump a fracturing fluid and a powertrain configured to power the reciprocating plunger pump. The powertrain includes a prime mover and a drivetrain, the prime mover including a gas turbine engine. The hydraulic fracturing unit also includes auxiliary equipmen…
Who is the assignee on this patent?
Bj Energy Solutions Llc
What technology area does this patent fall under?
Primary CPC classification E21B43/2607. Mapped technology areas include Fixed Constructions.
When was this patent published?
Publication date Tue Dec 20 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).