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US Patent 11421528 Fracture complexity operation control

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Is a
Patent
Patent

Patent attributes

Patent Applicant
Halliburton
Halliburton
Current Assignee
Halliburton
Halliburton
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11421528
Date of Patent
August 23, 2022
Patent Application Number
17069342
Date Filed
October 13, 2020
Patent Citations
‌
US Patent 10677961 Method for optimizing perforation parameters to maintain uniform fracture growth in multi-stage hydraulic fracturing of horizontal well
‌
US Patent 10738580 Electric driven hydraulic fracking system
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US Patent 10760416 Method of performing wellsite fracture operations with statistical uncertainties
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US Patent 10851633 Method and apparatus for reservoir analysis and fracture design in a rock layer
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US Patent 10914139 Systems and methods for optimization of the number of diverter injections and the timing of the diverter injections relative to stimulant injection
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US Patent 10920552 Method of integrating fracture, production, and reservoir operations into geomechanical operations of a wellsite
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US Patent 10920538 Method integrating fracture and reservoir operations into geomechanical operations of a wellsite
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US Patent 10253598 Diagnostic lateral wellbores and methods of use
...
Patent Primary Examiner
‌
Kenneth L Thompson
CPC Code
‌
E21B 43/26
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E21B 43/17
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E21B 41/0092
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E21B 2200/20

Aspects of the subject technology relate to systems, methods, and computer-readable media for controlling a hydraulic fracturing job. Diagnostics data of a hydraulic fracturing completion of a wellbore can be received. A fracture formation model that models formation characteristics of fractures formed through the wellbore into a formation surrounding the wellbore during the hydraulic fracturing completion with respect to surface variables can be accessed. A subsurface objective function of fracture complexity can be selected from a plurality of subsurface objective functions for changing one or more of the formation characteristics of the fractures. The fracture formation model can be applied based on the diagnostics data to determine values of the surface variables for controlling the formation characteristics of the fractures to converge on the subsurface objective function of fracture complexity. As follows, a fracture completion plan can be formed based on the values of the surface variables.

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