Patents by Inventor Xueyu Pang
Xueyu Pang 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: 11898085Abstract: The present disclosure relates to downhole fluid additives including a clay, a hydroxylated polymer, a cation, and water. The disclosure further relates to downhole fluids, including drilling fluids, spaces, cements, and proppant delivery fluids containing such as downhole fluid additive and methods of using such fluids. The downhole fluid additive may have any of a variety of functions in the downhole fluid and may confer any of a variety of properties upon it, such as salt tolerance or desired viscosities even at high downhole temperatures.Type: GrantFiled: October 5, 2021Date of Patent: February 13, 2024Assignee: Halliburton Energy Services, Inc.Inventors: Vivek S. Goel, Peter James Boul, Xueyu Pang, Lee J. Hall, Jay P. Deville, Samuel J. Lewis, B. Raghava Reddy, Trissa Joseph, Xiangnan Ye
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Patent number: 11833478Abstract: Systems and methods related to preparing foamed cement for laboratory analysis are provided. A prepared cement slurry is placed in a cement reservoir cell configured to pressurize the cement slurry contained within the cement reservoir cell to a capture pressure. After pressurization, the cement slurry and a compressed gas are introduced into a foam generator. Foamed cement generated in the foam generator is introduced from the tee into a foam capture cell where it can cure prior to analysis.Type: GrantFiled: August 20, 2021Date of Patent: December 5, 2023Assignee: Halliburton Energy Services, Inc.Inventors: Xueyu Pang, Walmy Cuello Jimenez, John P. Singh, Thomas Singh Sodhi, Aaron Cade Prince, Joe Kleber Maxson, Ronnie Glen Morgan
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Patent number: 11827840Abstract: The present invention belongs to the technical field of oil well cement preparation, discloses a long-term high-temperature resistant and toughened well cementing and silica-cement composite material and a preparation method. A solid component comprises cement, alumina, superfine, high-purity silica sand, a suspending agent and a toughening material according to weight fractions; the toughening material comprises a latex fiber toughening agent and a nano graphene sheet; and a liquid component is composed of water, nano iron oxide and an oil well cement admixture according to weight fractions. Cement slurry with a ratio of the present invention can achieve compressive strength reaching up to 31 MPa after being cured under a high-temperature and high-pressure environment of 200° C. and 150 MPa for one year; and the gas permeability is controlled below 0.02 mD.Type: GrantFiled: January 6, 2023Date of Patent: November 28, 2023Assignee: China University of Petroleum (East China)Inventors: Xueyu Pang, Jiankun Qin, Hailong Li, Guodong Cheng
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Patent number: 11795383Abstract: Provided are compositions and methods of using a liquid suspension of hollow particles comprising a plurality of hollow particles, water, a suspending aid, and a stabilizer selected from the group consisting of a non-ionic surfactant, a latex, an oleaginous fluid, porous silica, and combinations thereof. The liquid suspension is homogenous. An example method includes statically storing the liquid suspension in a container for at least one week; wherein the liquid suspension maintains a difference in density from the top of the container to the bottom of the container of less than one pound per gallon while stored. The method further includes adding the liquid suspension to a treatment fluid; wherein the liquid suspension reduces the density of the treatment fluid; and introducing the treatment fluid into a wellbore penetrating a subterranean formation.Type: GrantFiled: September 8, 2022Date of Patent: October 24, 2023Assignee: Halliburton Energy Services, Inc.Inventors: Xueyu Pang, Gregory Hundt, Samuel Lewis, Thomas Singh Sodhi, John P. Singh, Brendon Tan
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Patent number: 11767272Abstract: A method of cementing may include: providing a first solid particulate material; measuring at least one physicochemical property of the first solid particulate material; correlating the at least one physicochemical property of the first solid particulate material to at least one physicochemical property of a second solid particulate material and at least one physicochemical of a third solid particulate material; determining if a result of the step of correlating meets an operational parameter; and preparing a cement slurry which meets the operational parameter.Type: GrantFiled: April 5, 2019Date of Patent: September 26, 2023Assignee: Halliburton Energy Services, Inc.Inventors: John Paul Bir Singh, Xueyu Pang, Aleksey V. Kolasnikov, Stephanie Ruiz, Ronnie Glen Morgan, Thomas Jason Pisklak, Krishna Babu Yerubandi
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Patent number: 11760914Abstract: Methods of wellbore cementing are provided. A method of designing a cement composition may include: selecting a target heat of hydration for a target time and temperature; selecting one or more cementitious components and a weight percent for each of the one or more cementitious components such that a sum of a heat of hydration of the one or more cementitious components is less than or equal to the target heat of hydration; preparing the cement composition; and allowing the cement composition to set.Type: GrantFiled: December 6, 2021Date of Patent: September 19, 2023Assignee: Halliburton Energy Services, Inc.Inventors: Walmy Cuello Jimenez, Xueyu Pang, John Paul Bir Singh
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Publication number: 20230279283Abstract: The present invention belongs to the technical field of oil well cement preparation, and discloses a long-term high-temperature resistant and toughened well cementing and silica-cement composite material and a preparation method. A solid component comprises cement, alumina, superfine high-purity silica sand, a suspending agent and a toughening material according to weight fractions; the toughening material comprises a latex fiber toughening agent and a nano graphene sheet; and a liquid component is composed of water, nano iron oxide and an oil well cement admixture according to weight fractions. Cement slurry with a ratio of the present invention can achieve compressive strength reaching up to 31 MPa after being cured under a high-temperature and high-pressure environment of 200° C. and 150 MPa for one year; and the gas permeability is controlled below 0.02 mD.Type: ApplicationFiled: January 6, 2023Publication date: September 7, 2023Applicant: China University of Petroleum (East China)Inventors: Xueyu PANG, Jiankun QIN, Hailong LI, Guodong CHENG
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Patent number: 11667827Abstract: A method of generating a wellbore treatment fluid comprising: obtaining a target Young's modulus; calculating a compressive strength requirement from a correlation comprising compressive strength and Young's modulus using the target Young's modulus as an input; classifying a plurality of solid particulates using correlations; calculating a reactive index and/or a water requirement for at least one of the solid particulates; and selecting two or more solid particulates from the plurality of solid particulates to create a wellbore treatment fluid, wherein two or more solid particulates are selected such that when the wellbore treatment fluid is prepared and set, the set wellbore treatment fluid has a 24 hour compressive strength greater than or equal to the compressive strength requirement.Type: GrantFiled: February 12, 2018Date of Patent: June 6, 2023Assignee: Halliburton Energy Services, Inc.Inventors: John Paul Bir Singh, Ronnie G. Morgan, Xueyu Pang, Thomas Jason Pisklak
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Patent number: 11639462Abstract: A method of servicing a wellbore may comprise providing a treatment fluid comprising a carrier fluid and hollow particles, wherein the hollow particles may comprise an outer wall that encapsulates a gas. The method may further comprise introducing the treatment fluid into a wellbore annulus and trapping at least a portion of the treatment fluid in the wellbore annulus. The carrier fluid may degrade the outer wall of the hollow particles in the wellbore annulus and release the encapsulated gas.Type: GrantFiled: November 30, 2020Date of Patent: May 2, 2023Assignee: Halliburton Energy Services, Inc.Inventors: James Neil Gillies, Thomas Jason Pisklak, Xueyu Pang, Richard F. Vargo, Jr.
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Publication number: 20230020371Abstract: Provided are compositions and methods of using a liquid suspension of hollow particles comprising a plurality of hollow particles, water, a suspending aid, and a stabilizer selected from the group consisting of a non-ionic surfactant, a latex, an oleaginous fluid, porous silica, and combinations thereof. The liquid suspension is homogenous. An example method includes statically storing the liquid suspension in a container for at least one week; wherein the liquid suspension maintains a difference in density from the top of the container to the bottom of the container of less than one pound per gallon while stored. The method further includes adding the liquid suspension to a treatment fluid; wherein the liquid suspension reduces the density of the treatment fluid; and introducing the treatment fluid into a wellbore penetrating a subterranean formation.Type: ApplicationFiled: September 8, 2022Publication date: January 19, 2023Applicant: Halliburton Energy Services, Inc.Inventors: Xueyu PANG, Gregory HUNDT, Samuel LEWIS, Thomas Singh SODHI, John P. SINGH, Brendon TAN
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Patent number: 11548831Abstract: A method of designing a cement composition may include: minimizing an objective function subject to a plurality of constraints to produce a cement composition including at least one cement component and water; and preparing the cement composition.Type: GrantFiled: April 5, 2019Date of Patent: January 10, 2023Assignee: Halliburton Energy Services, Inc.Inventors: John Paul Bir Singh, Xueyu Pang, Krishna Babu Yerubandi, Ronnie Glen Morgan, Thomas Jason Pisklak
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Patent number: 11542207Abstract: A method may include: analyzing each of a group of inorganic particles to generate data about physicochemical properties of each of the inorganic particles; and generating a correlation between a reactivity index of each of the inorganic particles and the data.Type: GrantFiled: April 5, 2019Date of Patent: January 3, 2023Assignee: Halliburton Energy Services, Inc.Inventors: John Paul Bir Singh, Xueyu Pang, Krishna Babu Yerubandi, Ronnie Glen Morgan, Thomas Jason Pisklak
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Patent number: 11466202Abstract: Provided are compositions and methods of using a liquid suspension of hollow particles comprising a plurality of hollow particles, water, a suspending aid, and a stabilizer selected from the group consisting of a non-ionic surfactant, a latex, an oleaginous fluid, porous silica, and combinations thereof. The liquid suspension is homogenous. An example method includes statically storing the liquid suspension in a container for at least one week; wherein the liquid suspension maintains a difference in density from the top of the container to the bottom of the container of less than one pound per gallon while stored. The method further includes adding the liquid suspension to a treatment fluid; wherein the liquid suspension reduces the density of the treatment fluid; and introducing the treatment fluid into a wellbore penetrating a subterranean formation.Type: GrantFiled: November 11, 2016Date of Patent: October 11, 2022Assignee: Halliburton Energy Services, Inc.Inventors: Xueyu Pang, Gregory Hundt, Samuel Lewis, Thomas Singh Sodhi, John P. Singh, Brendon Tan
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Publication number: 20220169907Abstract: A method of servicing a wellbore may comprise providing a treatment fluid comprising a carrier fluid and hollow particles, wherein the hollow particles may comprise an outer wall that encapsulates a gas. The method may further comprise introducing the treatment fluid into a wellbore annulus and trapping at least a portion of the treatment fluid in the wellbore annulus. The carrier fluid may degrade the outer wall of the hollow particles in the wellbore annulus and release the encapsulated gas.Type: ApplicationFiled: November 30, 2020Publication date: June 2, 2022Applicant: Halliburton Energy Services, Inc.Inventors: James Neil Gillies, Thomas Jason Pisklak, Xueyu Pang, Richard F. Vargo, JR.
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Patent number: 11326417Abstract: Some aspects of what is described here relate to analyzing a well cement slurry. In some aspects, a well cement slurry is mixed in a mixer under a plurality of conditions. The plurality of conditions correspond to a plurality of distinct Reynolds number values for the well cement slurry in the mixer. Power number values associated with mixing the well cement slurry in the mixer under the plurality of conditions are identified. Each power number value is based on an amount of energy used to mix the well cement slurry under a respective one of the plurality of conditions. Values for parameters of a functional relationship between power number and Reynolds number are identified based on the power number values and the Reynolds number values for the plurality of conditions.Type: GrantFiled: August 27, 2019Date of Patent: May 10, 2022Assignee: Halliburton Energy Services, Inc.Inventors: Vivek S. Goel, Pauline Akinyi Otieno, Xueyu Pang, Thomas Singh Sodhi
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Publication number: 20220089933Abstract: Methods of wellbore cementing are provided. A method of designing a cement composition may include: selecting a target heat of hydration for a target time and temperature; selecting one or more cementitious components and a weight percent for each of the one or more cementitious components such that a sum of a heat of hydration of the one or more cementitious components is less than or equal to the target heat of hydration; preparing the cement composition; and allowing the cement composition to set.Type: ApplicationFiled: December 6, 2021Publication date: March 24, 2022Applicant: Halliburton Energy Services, Inc.Inventors: Walmy Cuello Jimenez, Xueyu Pang, John Paul Bir Singh
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Publication number: 20220081603Abstract: The present disclosure relates to downhole fluid additives including a clay, a hydroxylated polymer, a cation, and water. The disclosure further relates to downhole fluids, including drilling fluids, spaces, cements, and proppant delivery fluids containing such as downhole fluid additive and methods of using such fluids. The downhole fluid additive may have any of a variety of functions in the downhole fluid and may confer any of a variety of properties upon it, such as salt tolerance or desired viscosities even at high downhole temperatures.Type: ApplicationFiled: October 5, 2021Publication date: March 17, 2022Inventors: Vivek S. Goel, Peter James Boul, Xueyu Pang, Lee J. Hall, Jay P. Deville, Samuel J. Lewis, B. Raghava Reddy, Trissa Joseph, Xiangnan Ye
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Patent number: 11225595Abstract: Methods of wellbore cementing are provided. A method of designing a cement composition may include: selecting a target heat of hydration for a target time and temperature; selecting one or more cementitious components and a weight percent for each of the one or more cementitious components such that a sum of a heat of hydration of the one or more cementitious components is less than or equal to the target heat of hydration; preparing the cement composition; and allowing the cement composition to set.Type: GrantFiled: February 22, 2017Date of Patent: January 18, 2022Assignee: Halliburton Energy Services, Inc.Inventors: Walmy Cuello Jimenez, Xueyu Pang, John Paul Bir Singh
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Publication number: 20210379540Abstract: Systems and methods related to preparing foamed cement for laboratory analysis are provided. A prepared cement slurry is placed in a cement reservoir cell configured to pressurize the cement slurry contained within the cement reservoir cell to a capture pressure. After pressurization, the cement slurry and a compressed gas are introduced into a foam generator. Foamed cement generated in the foam generator is introduced from the tee into a foam capture cell where it can cure prior to analysis.Type: ApplicationFiled: August 20, 2021Publication date: December 9, 2021Inventors: Xueyu Pang, Walmy Cuello Jimenez, John P. Singh, Thomas Singh Sodhi, Aaron Cade Prince, Joe Kleber Maxson, Ronnie Glen Morgan
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Patent number: 11192072Abstract: Systems and methods related to preparing foamed cement for laboratory analysis are provided. A prepared cement slurry is placed in a cement reservoir cell configured to pressurize the cement slurry contained within the cement reservoir cell to a capture pressure. After pressurization, the cement slurry and a compressed gas are introduced into a foam generator. Foamed cement generated in the foam generator is introduced from the tee into a foam capture cell where it can cure prior to analysis.Type: GrantFiled: September 30, 2016Date of Patent: December 7, 2021Assignee: Halliburton Energy Services, Inc.Inventors: Xueyu Pang, Walmy Cuello Jimenez, John P. Singh, Thomas Singh Sodhi, Aaron Cade Prince, Joe Kleber Maxson, Ronnie Glen Morgan