Patents by Inventor Tim Holiman HUNTER
Tim Holiman HUNTER 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: 11920579Abstract: A pumping system pumps material or fluid downhole, for example, to perform a stimulation operation. The pumping system can include a hydraulic pump coupled to an intensifier. The intensifier may have a piston which allows for a small footprint as compared to an intensifier with a plunger. The hydraulic cylinder of the intensifier may be protected from the corrosive, erosive and/or abrasive effects of the material or fluid to be pumped by one or more seals. Using the intensifier that includes a piston may provide for a greater reliability of the overall pumping system, as fewer strokes are required, and a compact pumping system, as the stroke length of the intensifier with a piston is less than the stroke length required for a plunger.Type: GrantFiled: October 5, 2018Date of Patent: March 5, 2024Assignee: Halliburton Energy Services, Inc.Inventors: Jim Basuki Surjaatmadja, Tim Holiman Hunter
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Patent number: 11629081Abstract: A water treatment apparatus, system and method including introducing an aqueous fluid into a chamber, the aqueous fluid having a pH below 7 and having an oxidizing agent. Contacting, within the chamber, the aqueous fluid with a corrodible sacrificial material which oxidizes in the presence of the oxidizing agent also reducing the oxidizing agent. Thereafter, adjusting, subsequent contacting the corroding particulate, the pH of the aqueous fluid to above 7.Type: GrantFiled: May 31, 2019Date of Patent: April 18, 2023Assignee: Halliburton Energy Services, Inc.Inventors: Jim Basuki Surjaatmadja, Tim Holiman Hunter
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Publication number: 20210348605Abstract: A pumping system pumps material or fluid downhole, for example, to perform a stimulation operation. The pumping system comprises a hydraulic pump coupled to an intensifier. The intensifier comprises a piston which allows for a small footprint as compared to an intensifier with a plunger. The hydraulic cylinder of the intensifier is protected from the corrosive, erosive and abrasive effects of the material or fluid to be pumped by one or more seals. Using the intensifier that includes a piston provides for a greater reliability of the overall pumping system as fewer strokes are required and a compact pumping system as the stroke length of the intensifier with a piston is less than the stroke length required for a plunger.Type: ApplicationFiled: October 5, 2018Publication date: November 11, 2021Inventors: Jim Basuki Surjaatmadja, Tim Holiman Hunter
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Publication number: 20210148221Abstract: A flow rate control sequence for modulating the flow rate at the surface, so as to increase and/or reduce the rate of flow at specific times and increments so that the flow rate of the diverter material downhole is correspondingly reduced or increased such that it enters dominant fractures and avoids entry of marginal fractures. To achieve this, a diversion plan may be developed involving a plurality of planning stages. These stages may include a first overall planning stage, a second downhole planning stage taking into account downhole rate schedule, and the third surface planning stage taking into account parameters at the surface which may impact a diversion plan.Type: ApplicationFiled: November 18, 2019Publication date: May 20, 2021Applicant: HALLIBURTON ENERGY SERVICES, INC.Inventors: Ronald Glen DUSTERHOFT, Stanley V. STEPHENSON, Tim Holiman HUNTER, Joshua Lane CAMP
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Publication number: 20200377395Abstract: A water treatment apparatus, system and method including introducing an aqueous fluid into a chamber, the aqueous fluid having a pH below 7 and having an oxidizing agent. Contacting, within the chamber, the aqueous fluid with a corrodible sacrificial material which oxidizes in the presence of the oxidizing agent also reducing the oxidizing agent. Thereafter, adjusting, subsequent contacting the corroding particulate, the pH of the aqueous fluid to above 7.Type: ApplicationFiled: May 31, 2019Publication date: December 3, 2020Applicant: HALLIBURTON ENERGY SERVICES, INC.Inventors: Jim Basuki SURJAATMADJA, Tim Holiman HUNTER
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Publication number: 20190360307Abstract: Slow-rotating tools may operate within a tubular structure such as casing or tubing strings in a wellbore, e.g., to clean an interior surface of the tubular structure or to support other wellbore applications. A slow-rotating tool may include a nozzle assembly that rotates with respect to an end of a coiled tubing strand or other conveyance, and a working fluid delivered through the conveyance may operate to drive rotation of the nozzle assembly. A motor component of the tool may include a coiled conduit that winds and un-winds in response to pressure fluctuations in the working fluid. The coiled conduit may be operably coupled to a pair of directional clutches that harness the rotational motion induced by the winding and unwinding, and impart the rotational motion to the rotatable housing in a single direction.Type: ApplicationFiled: May 31, 2017Publication date: November 28, 2019Inventors: Robert Pipkin, Jim B. Surjaatmadja, Tim Holiman Hunter
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Patent number: 10113388Abstract: An actuatable wellbore isolation assembly including a housing defining an axial flowbore and including a mandrel portion, a first end portion, and a second end portion; a radially expandable isolating member positioned circumferentially about the housing; a sliding sleeve circumferentially positioned about the mandrel, the sliding sleeve being movable from a first position, in which the sliding sleeve retains the isolating member in a narrower non-expanded conformation, to a second position, in which the sliding sleeve does not retain the isolating member in the narrower non-expanded conformation; and an actuator assemblage configured to allow movement of the sliding sleeve from the first to the second position. In an exemplary embodiment, the actuator assemblage includes a biasing chamber having a biasing member disposed therein, wherein the biasing member is configured to apply a force to the sliding sleeve to move the sliding sleeve from the first to the second position.Type: GrantFiled: March 26, 2015Date of Patent: October 30, 2018Assignee: HALLIBURTON ENERGY SERVICES, INC.Inventors: Takao Stewart, Robert Lee Pipkin, Eric Bivens, Fraser McNeil, Michael Bailey, Tim Holiman Hunter
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Publication number: 20150198007Abstract: An actuatable wellbore isolation assembly including a housing defining an axial flowbore and including a mandrel portion, a first end portion, and a second end portion; a radially expandable isolating member positioned circumferentially about the housing; a sliding sleeve circumferentially positioned about the mandrel, the sliding sleeve being movable from a first position, in which the sliding sleeve retains the isolating member in a narrower non-expanded conformation, to a second position, in which the sliding sleeve does not retain the isolating member in the narrower non-expanded conformation; and an actuator assemblage configured to allow movement of the sliding sleeve from the first to the second position. In an exemplary embodiment, the actuator assemblage includes a biasing chamber having a biasing member disposed therein, wherein the biasing member is configured to apply a force to the sliding sleeve to move the sliding sleeve from the first to the second position.Type: ApplicationFiled: March 26, 2015Publication date: July 16, 2015Inventors: Takao Stewart, Robert Lee Pipkin, Eric Bivens, Fraser McNeil, Michael Bailey, Tim Holiman Hunter
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Patent number: 9016390Abstract: An actuatable wellbore isolation assembly comprising a housing generally defining an axial flowbore and comprising a mandrel portion, a first end portion, and a second end portion, a radially expandable isolating member positioned circumferentially about a portion of the housing, a sliding sleeve circumferentially positioned about a portion of the mandrel of the cylindrical housing, the sliding sleeve being movable from, a first position in which the sliding sleeve retains the expandable isolating member in a narrower non-expanded conformation to a second position in which the sliding sleeve does not retain the expandable isolating member in the narrower non-expanded conformation, and an actuator assemblage configured to selectively allow movement of the sliding sleeve from the first position to the second position.Type: GrantFiled: October 12, 2011Date of Patent: April 28, 2015Assignee: Halliburton Energy Services, Inc.Inventors: Takao Tommy Stewart, Robert Lee Pipkin, Eric Bivens, Fraser McNeil, Michael Brent Bailey, Tim Holiman Hunter
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Publication number: 20130092400Abstract: An actuatable wellbore isolation assembly comprising a housing generally defining an axial flowbore and comprising a mandrel portion, a first end portion, and a second end portion, a radially expandable isolating member positioned circumferentially about a portion of the housing, a sliding sleeve circumferentially positioned about a portion of the mandrel of the cylindrical housing, the sliding sleeve being movable from, a first position in which the sliding sleeve retains the expandable isolating member in a narrower non-expanded conformation to a second position in which the sliding sleeve does not retain the expandable isolating member in the narrower non-expanded conformation, and an actuator assemblage configured to selectively allow movement of the sliding sleeve from the first position to the second position.Type: ApplicationFiled: October 12, 2011Publication date: April 18, 2013Applicant: HALLIBURTON ENERGY SERVICES, INC.Inventors: Takao Tommy STEWART, Robert Lee PIPKIN, Eric BIVENS, Fraser MCNEIL, Michael Brent BAILEY, Tim Holiman HUNTER