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US Patent 9945220 Methods and system for creating high conductivity fractures

Patent 9945220 was granted and assigned to The Lubrizol Corporation on April, 2018 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Current Assignee
The Lubrizol Corporation
The Lubrizol Corporation
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9945220
Patent Inventor Names
Clayton S. Smith0
Chih- Chau Hwang0
Duane Treybig0
Kern L. Smith0
Leonid Vigderman0
Mathew M. Samuel0
Pratyush Singh0
Rajesh K. Saini0
Date of Patent
April 17, 2018
Patent Application Number
14546246
Date Filed
November 18, 2014
Patent Citations Received
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US Patent 11867012 Gauge cutter and sampler apparatus
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US Patent 12012550 Attenuated acid formulations for acid stimulation
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US Patent 12071589 Water-soluble graphene oxide nanosheet assisted high temperature fracturing fluid
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US Patent 11713411 Oxidizing gasses for carbon dioxide-based fracturing fluids
0
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US Patent 11713413 Viscoelastic-surfactant fracturing fluids having oxidizer
0
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US Patent 11867028 Gauge cutter and sampler apparatus
0
‌
US Patent 12025589 Indentation method to measure multiple rock properties
0
‌
US Patent 12116528 Oxidizing gasses for carbon dioxide-based fracturing fluids
0
Patent Primary Examiner
‌
Aiqun Li
Patent abstract

Methods for forming proppant pillars in a formation during formation fracturing include include periods of pumping a first fracturing fluid including a proppant and an aggregating composition including a reaction product of a phosphate compound or a plurality of phosphate and an amine, periods of pumping a second fracturing fluid excluding a proppant and an aggregating composition including a reaction product of a phosphate compound and periods of pumping a third fracturing fluid including an aggregating composition including a reaction product of a phosphate compound, where the pumping of the three fracturing fluids may be in any order and may involve continuous pumping, pulse pumping, or non-continuous pumping.

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