Patents by Inventor Mohammad Hamidul Haque
Mohammad Hamidul Haque has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12252649Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: GrantFiled: September 25, 2023Date of Patent: March 18, 2025Assignee: Saudi Arabian Oil CompanyInventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Patent number: 12173234Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: GrantFiled: September 25, 2023Date of Patent: December 24, 2024Assignee: Saudi Arabian Oil CompanyInventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Patent number: 12168753Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: GrantFiled: September 25, 2023Date of Patent: December 17, 2024Assignee: Saudi Arabian Oil CompanyInventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Publication number: 20240018413Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: ApplicationFiled: September 25, 2023Publication date: January 18, 2024Inventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Publication number: 20240010908Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: ApplicationFiled: September 25, 2023Publication date: January 11, 2024Inventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Publication number: 20240010909Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: ApplicationFiled: September 25, 2023Publication date: January 11, 2024Inventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Patent number: 11795382Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: GrantFiled: July 14, 2020Date of Patent: October 24, 2023Assignee: Saudi Arabian Oil CompanyInventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Patent number: 11669659Abstract: Systems and methods for determining mechanical properties of formation rock using, for example, millimeter-scale test samples of the formation rock are disclosed. The test samples may be single edge notched beam (SENB) test samples. The systems and methods may include performing laboratory testing on the SENB test samples and recording laboratory testing data obtained from the laboratory testing and performing a simulation on a numerical model of the SENB test samples and recording the simulation data obtained from the simulation. The laboratory testing data and the simulation data may be compared, and a determination may be made as to whether a selected degree of correlation is present between the laboratory testing data and the simulation exists. Mechanical properties of the formation rock are obtained from the simulation data when the selected degree of correlation exists between the laboratory testing data and the simulation data.Type: GrantFiled: October 29, 2019Date of Patent: June 6, 2023Assignee: Saudi Arabian Oil CompanyInventors: Yanhui Han, Mohammad Hamidul Haque, Ming Fan, Younane N. Abousleiman
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Patent number: 11667832Abstract: Producing proppants with nanoparticle proppant coatings includes reacting nanoparticles with at least one of an alkoxysilane solution or a halosilane solution to form functionalized nanoparticles and coating proppant particles with unfunctionalized organic resin, a strengthening agent, and the functionalized nanoparticles to produce the nanoparticle coated proppant. The functionalized nanoparticles include nanoparticles having at least one attached omniphobic moiety including at least a fluoroalkyl-containing group including 1H, 1H, 2H, 2H-perfluorooctylsilane. The strengthening agent comprises at least one of carbon nanotubes, silica, alumina, mica, nanoclay, graphene, boron nitride nanotubes, vanadium pentoxide, zinc oxide, calcium carbonate, or zirconium oxide.Type: GrantFiled: September 9, 2022Date of Patent: June 6, 2023Assignee: Saudi Arabian Oil CompanyInventors: Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Publication number: 20230074622Abstract: Producing proppants with nanoparticle proppant coatings includes reacting nanoparticles with at least one of an alkoxysilane solution or a halosilane solution to form functionalized nanoparticles and coating proppant particles with unfunctionalized organic resin, a strengthening agent, and the functionalized nanoparticles to produce the nanoparticle coated proppant. The functionalized nanoparticles include nanoparticles having at least one attached omniphobic moiety including at least a fluoroalkyl-containing group including 1H, 1H, 2H, 2H-perfluorooctylsilane. The strengthening agent comprises at least one of carbon nanotubes, silica, alumina, mica, nanoclay, graphene, boron nitride nanotubes, vanadium pentoxide, zinc oxide, calcium carbonate, or zirconium oxide.Type: ApplicationFiled: September 9, 2022Publication date: March 9, 2023Applicant: Saudi Arabian Oil CompanyInventors: Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Patent number: 11578263Abstract: A method of forming a ceramic-coated proppant, including receiving a proppant or particle and coating the proppant or particle with ceramic to give a ceramic coating on the proppant or particle. A method of hydraulic fracturing a geological formation with the ceramic-coated proppant.Type: GrantFiled: May 12, 2020Date of Patent: February 14, 2023Assignee: Saudi Arabian Oil CompanyInventors: Mohammad Hamidul Haque, Rajesh Kumar Saini
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Patent number: 11473010Abstract: Producing proppants with nanoparticle proppant coating include coating the proppant particles with a strengthening agent, functionalized nanoparticles, and unfunctionalized organic resin to produce proppant with nanoparticle proppant coating. Additionally, a proppant comprising a proppant particle and a nanoparticle proppant coating is provided. The nanoparticle proppant coating includes a strengthening agent, functionalized nanoparticles, and unfunctionalized organic resin. The nanoparticle proppant coating coats the proppant particle.Type: GrantFiled: August 22, 2019Date of Patent: October 18, 2022Assignee: Saudi Arabian Oil CompanyInventors: Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Patent number: 11236020Abstract: Methods and systems for fabricating synthetic source rocks with organic materials, for example, using high energy resonant acoustic mixing technology, are provided. An example method includes preparing one or more organic components including kerogen, mixing, by utilizing resonant acoustic waves, the one or more organic components with one or more inorganic components to obtain a mixture, and processing the mixture to fabricate a synthetic source rock. Another example method includes mixing one or more organic components and one or more inorganic components with a kerogen precursor as an organic binder to obtain a mixture including artificial kerogen and processing the mixture to fabricate a synthetic source rock. One or more mechanical or chemo-mechanical properties of the synthetic source rock can be characterized as one or more functions of the one or more organic components and the one or more inorganic components.Type: GrantFiled: May 2, 2018Date of Patent: February 1, 2022Assignee: Saudi Arabian Oil CompanyInventors: Mohammad Hamidul Haque, Younane N. Abousleiman, Katherine Leigh Hull, David Jacobi, Yanhui Han
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Publication number: 20220017813Abstract: A system and method for hydraulic fracturing a subterranean formation with fracturing fluid to generate fractures, and intermittently adjusting a characteristic of the fracturing fluid conveying proppant to form pillars of proppant in the fractures.Type: ApplicationFiled: July 14, 2020Publication date: January 20, 2022Inventors: Ataur Malik, Mohammed A. Asiri, Saad Al-Driweesh, Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed
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Publication number: 20210355372Abstract: A method of forming a ceramic-coated proppant, including receiving a proppant or particle and coating the proppant or particle with ceramic to give a ceramic coating on the proppant or particle. A method of hydraulic fracturing a geological formation with the ceramic-coated proppant.Type: ApplicationFiled: May 12, 2020Publication date: November 18, 2021Inventors: Mohammad Hamidul Haque, Rajesh Kumar Saini
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Patent number: 11028680Abstract: A system and method for hydraulically fracturing a geological formation with fracturing fluid to generate fractures in the geological formation and forming proppant in situ in the fractures by synthesizing mineral from ions in the fracturing fluid.Type: GrantFiled: May 26, 2020Date of Patent: June 8, 2021Assignee: Saudi Arabian Oil CompanyInventors: Desmond Schipper, Katherine Leigh Hull, Mohammad Hamidul Haque
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Publication number: 20210124809Abstract: Systems and methods for determining mechanical properties of formation rock using, for example, millimeter-scale test samples of the formation rock are disclosed. The test samples may be single edge notched beam (SENB) test samples. The systems and methods may include performing laboratory testing on the SENB test samples and recording laboratory testing data obtained from the laboratory testing and performing a simulation on a numerical model of the SENB test samples and recording the simulation data obtained from the simulation. The laboratory testing data and the simulation data may be compared, and a determination may be made as to whether a selected degree of correlation is present between the laboratory testing data and the simulation exists. Mechanical properties of the formation rock are obtained from the simulation data when the selected degree of correlation exists between the laboratory testing data and the simulation data.Type: ApplicationFiled: October 29, 2019Publication date: April 29, 2021Inventors: Yanhui Han, Mohammad Hamidul Haque, Ming Fan, Younane N. Abousleiman
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Patent number: 10988681Abstract: Methods for producing proppants with a nanocomposite proppant coating are provided. The methods include coating the proppant particles with a nano-reinforcing agent, a surface modifier, and a resin to produce proppants with nanocomposite proppant coating. Additionally, a proppant comprising a proppant particle and a nanocomposite proppant coating is provided. The nanocomposite proppant coating includes a nano-reinforcing agent, a surface modifier, and a resin. The nanocomposite proppant coating coats the proppant particle. Additionally, a method for increasing a rate of hydrocarbon production from a subsurface formation through the use of the proppants is provided.Type: GrantFiled: May 13, 2019Date of Patent: April 27, 2021Assignee: Saudi Arabian Oil CompanyInventors: Mohammad Hamidul Haque, Rajesh Kumar Saini, Mohammed Sayed
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Publication number: 20210079293Abstract: Methods for producing proppants with a polyurethane proppant coating are provided. The methods include forming aliphatic polycarbonate polyols from the copolymerization of epoxide and CO2 monomers, forming the polyurethane proppant coating by reacting the aliphatic polycarbonate polyols and at least one of diisocyanate monomers and isocyanate monomers, and coating proppant particles with the polyurethane proppant coating to produce coated proppants with polyurethane proppant coating.Type: ApplicationFiled: September 17, 2019Publication date: March 18, 2021Applicant: Saudi Arabian Oil CompanyInventors: Rajesh Kumar Saini, Mohammad Hamidul Haque, Scott Douglas Allen
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Publication number: 20210054263Abstract: Methods for producing proppant with nanoparticle proppant coating are provided. The methods include coating the proppant particles with a strengthening agent, functionalized nanoparticles, and unfunctionalized organic resin to produce proppant with nanoparticle proppant coating. Additionally, a proppant comprising a proppant particle and a nanoparticle proppant coating is provided. The nanoparticle proppant coating includes a strengthening agent, functionalized nanoparticles, and unfunctionalized organic resin. The nanoparticle proppant coating coats the proppant particle. Additionally, a method for increasing a rate of hydrocarbon production from a subsurface formation through the use of the proppant is provided.Type: ApplicationFiled: August 22, 2019Publication date: February 25, 2021Applicant: Aramco Services CompanyInventors: Rajesh Kumar Saini, Mohammad Hamidul Haque, Mohammed Sayed