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US Patent 11852001 Methods and systems for operating a fleet of pumps

Patent 11852001 was granted and assigned to BJ Energy Solutions on December, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
0

Patent attributes

Patent Applicant
BJ Energy Solutions
BJ Energy Solutions
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Current Assignee
BJ Energy Solutions
BJ Energy Solutions
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
118520010
Patent Inventor Names
Joseph Foster0
Samir Nath Seth0
Tony Yeung0
Warren Zemlak0
Diankui Fu0
Ricardo Rodriguez-Ramon0
Date of Patent
December 26, 2023
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Patent Application Number
181087520
Date Filed
February 13, 2023
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Patent Citations
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US Patent 7047747 Method of and device for controlling fuel for gas turbine
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US Patent 7065953 Supercharging system for gas turbines
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US Patent 7143016 System and method for dynamic multi-objective optimization of pumping system operation and diagnostics
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US Patent 7222015 Methods and apparatus for operation of multiple fuel engines
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US Patent 7281519 Set of piston type fuel pumps for internal combustion engines with direct fuel injection
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US Patent 7388303 Stand-alone electrical system for large motor loads
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US Patent 7404294 Gas turbine and a method for controlling a gas turbine
0
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US Patent 7442239 Fuel-conditioning skid
0
...
Patent Primary Examiner
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James G Sayre
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CPC Code
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F04B 23/04
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E21B 43/2607
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F04B 2201/1203
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F04B 49/20
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E21B 43/26
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Patent abstract

Embodiments of a system, controller, and method for operating a plurality of pumps for a turbine driven fracturing pump system used in hydraulic fracturing are disclosed. In an embodiment, a method of operating a plurality of pumps associated with a hydraulic fracturing system includes receiving a demand Hydraulic Horse Power (HHP) signal. The demand HHP signal may include the Horse Power (HP) required for the hydraulic fracturing system to operate and may include consideration for frictional and other losses. The method further includes operating available pump units at a percentage of rating below Maximum Continuous Power (MCP) level, based at least in part on the demand HHP signal. Furthermore, the method may include receiving a signal for loss of power from one or more pump units. The method further includes operating one or more units at MCP level and operating one or more pump units at Maximum Intermittent Power (MIP) level to meet the demand HHP signal.

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