Patents by Inventor Dominik HOHEISEL
Dominik HOHEISEL 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: 12320643Abstract: A drilling system includes a method of determining an orientation of a drill string in a borehole. Sensor readings of a magnetic field of a drill bit are obtained at a plurality of positions along a curve extending around the drill bit along a longitudinal bit axis from a first location to a second location. A drill string includes the drill bit and a downhole magnetic field sensor that obtains a measurement of a local earth magnetic field, wherein the measurement is affected by the magnetic field of the drill bit. A processor determines a magnetic dipole moment of the drill bit from the plurality of sensor readings, calculates a second measurement of the local earth magnetic field downhole using the magnetic dipole moment of the drill bit, and determines the orientation of the drill string from the calculated correction of the measurement of the local earth magnetic field.Type: GrantFiled: March 31, 2023Date of Patent: June 3, 2025Assignee: BAKER HUGHES OILFIELD OPERATIONS LLCInventors: Alexey Bondarenko, Gunnar Tackmann, Dominik Hoheisel, Veronica Vanessa Herrera Bano
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Patent number: 12253645Abstract: A method of estimating a magnetic property of a downhole component includes measuring a magnetic field strength of the downhole component at a plurality of axial locations along the downhole component to generate a plurality of magnetic field strength measurements, each magnetic field strength measurement taken in a near field region of the downhole component, and analyzing the magnetic field measurements to estimate a magnetic signature of the downhole component. The method also includes estimating an expected maximum pole strength of the downhole component based on the magnetic signature, and configuring the downhole component in a borehole string based on the expected maximum pole strength.Type: GrantFiled: February 22, 2023Date of Patent: March 18, 2025Assignee: BAKER HUGHES OILFIELD OPERATIONS LLCInventors: Gunnar Tackmann, Alexander Mayer, Veronica Vanessa Herrera Bano, Dominik Hoheisel
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Publication number: 20240280722Abstract: A method of estimating a magnetic property of a downhole component includes measuring a magnetic field strength of the downhole component at a plurality of axial locations along the downhole component to generate a plurality of magnetic field strength measurements, each magnetic field strength measurement taken in a near field region of the downhole component, and analyzing the magnetic field measurements to estimate a magnetic signature of the downhole component. The method also includes estimating an expected maximum pole strength of the downhole component based on the magnetic signature, and configuring the downhole component in a borehole string based on the expected maximum pole strength.Type: ApplicationFiled: February 22, 2023Publication date: August 22, 2024Inventors: Gunnar Tackmann, Alexander Mayer, Veronica Vanessa Herrera Bano, Dominik Hoheisel
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Patent number: 11867855Abstract: Methods, systems, devices, and products for acoustic detection in a borehole.Type: GrantFiled: December 10, 2019Date of Patent: January 9, 2024Assignee: BAKER HUGHES OILFIELD OPERATIONS LLCInventors: Sebastian Jung, Thomas Kruspe, Gunnar Tackmann, Dominik Hoheisel, Lennert Rabe, Jonathan Leong
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Patent number: 11814949Abstract: A down-hole tool includes at least one wall. The at least one wall may include a plurality of joined substantially parallel layers of material, a plurality of pockets defined within the at least one wall, each pocket of the plurality of pockets including a plurality of openings formed in consecutive layers of the plurality of joined substantially parallel layers of material, and a plurality of recesses defined within the at least one wall and between layers of the plurality of joined substantially parallel layers of material, the plurality of recesses defining at least one conduit. The down-hole tool also includes at least one electronic component disposed within a pocket of the plurality of pockets and at least one electrical connection disposed within the at least one conduit.Type: GrantFiled: August 17, 2022Date of Patent: November 14, 2023Assignee: Baker Hughes Oilfield Operations LLCInventors: Dominik Hoheisel, Thomas Kruspe
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Publication number: 20230341226Abstract: A drilling system includes a method of determining an orientation of a drill string in a borehole. Sensor readings of a magnetic field of a drill bit are obtained at a plurality of positions along a curve extending around the drill bit along a longitudinal bit axis from a first location to a second location. A drill string includes the drill bit and a downhole magnetic field sensor that obtains a measurement of a local earth magnetic field, wherein the measurement is affected by the magnetic field of the drill bit. A processor determines a magnetic dipole moment of the drill bit from the plurality of sensor readings, calculates a second measurement of the local earth magnetic field downhole using the magnetic dipole moment of the drill bit, and determines the orientation of the drill string from the calculated correction of the measurement of the local earth magnetic field.Type: ApplicationFiled: March 31, 2023Publication date: October 26, 2023Inventors: Alexey Bondarenko, Gunnar Tackmann, Dominik Hoheisel, Veronica Vanessa Herrera Bano
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Publication number: 20230003116Abstract: A down-hole tool includes at least one wall. The at least one wall may include a plurality of joined substantially parallel layers of material, a plurality of pockets defined within the at least one wall, each pocket of the plurality of pockets including a plurality of openings formed in consecutive layers of the plurality of joined substantially parallel layers of material, and a plurality of recesses defined within the at least one wall and between layers of the plurality of joined substantially parallel layers of material, the plurality of recesses defining at least one conduit. The down-hole tool also includes at least one electronic component disposed within a pocket of the plurality of pockets and at least one electrical connection disposed within the at least one conduit.Type: ApplicationFiled: August 17, 2022Publication date: January 5, 2023Inventors: Dominik Hoheisel, Thomas Kruspe
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Patent number: 11434747Abstract: A down-hole tool includes at least one wall. The at least one wall may include a plurality of joined substantially parallel layers of material, a plurality of pockets defined within the at least one wall, each pocket of the plurality of pockets including a plurality of openings formed in consecutive layers of the plurality of joined substantially parallel layers of material, and a plurality of recesses defined within the at least one wall and between layers of the plurality of joined substantially parallel layers of material, the plurality of recesses defining at least one conduit. The down-hole tool also includes at least one electronic component disposed within a pocket of the plurality of pockets and at least one electrical connection disposed within the at least one conduit.Type: GrantFiled: July 24, 2020Date of Patent: September 6, 2022Assignee: Baker Hughes Oilfield Operations LLCInventors: Dominik Hoheisel, Thomas Kruspe
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Patent number: 11306578Abstract: Apparatus and methods directed to an assembly associated with a downhole tool, and including: a thermal housing; at least one internal component inside the thermal housing, wherein the at least one internal component comprises at least one thermally sensitive component; and a thermal isolation support connecting the at least one internal component to the tool. The thermal isolation support may comprise an additive manufacturing structural framework connected to the tool. The structural framework may include a plurality of structural members, with a majority of the plurality of structural members substantially non-parallel with a longitudinal axis of the downhole tool.Type: GrantFiled: April 16, 2018Date of Patent: April 19, 2022Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Michael Joseph Mannas, Dominik Hoheisel, Thomas Kruspe, Sebastian Jung
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Publication number: 20220025760Abstract: A down-hole tool includes at least one wall. The at least one wall may include a plurality of joined substantially parallel layers of material, a plurality of pockets defined within the at least one wall, each pocket of the plurality of pockets including a plurality of openings formed in consecutive layers of the plurality of joined substantially parallel layers of material, and a plurality of recesses defined within the at least one wall and between layers of the plurality of joined substantially parallel layers of material, the plurality of recesses defining at least one conduit. The down-hole tool also includes at least one electronic component disposed within a pocket of the plurality of pockets and at least one electrical connection disposed within the at least one conduit.Type: ApplicationFiled: July 24, 2020Publication date: January 27, 2022Inventors: Dominik Hoheisel, Thomas Kruspe
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Publication number: 20210173106Abstract: Methods, systems, devices, and products for acoustic detection in a borehole.Type: ApplicationFiled: December 10, 2019Publication date: June 10, 2021Applicant: Baker Hughes Oilfield Operations LLCInventors: Sebastian Jung, Thomas Kruspe, Gunnar Tackmann, Dominik Hoheisel, Lennert Rabe, Jonathan Leong
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Publication number: 20190316460Abstract: Apparatus and methods directed to an assembly associated with a downhole tool, and including: a thermal housing; at least one internal component inside the thermal housing, wherein the at least one internal component comprises at least one thermally sensitive component; and a thermal isolation support connecting the at least one internal component to the tool. The thermal isolation support may comprise an additive manufacturing structural framework connected to the tool. The structural framework may include a plurality of structural members, with a majority of the plurality of structural members substantially non-parallel with a longitudinal axis of the downhole tool.Type: ApplicationFiled: April 16, 2018Publication date: October 17, 2019Applicant: Baker Hughes, a GE company, LLCInventors: MICHAEL JOSEPH MANNAS, DOMINIK HOHEISEL, THOMAS KRUSPE, SEBASTIAN JUNG
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Patent number: 10247665Abstract: The invention relates to a device tier determining a concentration of a chemical substance dissolved in a liquid, which chemical substance absorbs light (10) of an absorption wavelength, wherein the device comprises: at least one flow-through chamber (2) having at least one inlet opening (4), at least one outlet opening (6), and at least one peripheral wall (24); at least one laser (8) for emitting light (10) of the absorption wavelength; and at least one detector (18) for detecting the emitted light (10); wherein the laser (8) and the detector (18) are arranged in such a way that the light (10) emitted by the laser (8) is conducted through the flow-through chamber (2) along at least two different paths before said light hits the detector (18), and wherein the device has two lasers (8) which emit light of different wavelengths. The invention further relates to a method for producing a flow-through chamber for such a device.Type: GrantFiled: January 19, 2015Date of Patent: April 2, 2019Assignee: Gottfried Wilhelm Leibniz Universitaet HannoverInventors: Lutz Rissing, Stephanie Holz, Dominik Hoheisel
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Publication number: 20160334328Abstract: The invention relates to a device tier determining a concentration of a chemical substance dissolved in a liquid, which chemical substance absorbs light (10) of an absorption wavelength, wherein the device comprises: at least one flow-through chamber (2) having at least one inlet opening (4), at least one outlet opening (6), and at least one peripheral wall (24); at least one laser (8) for emitting light (10) of the absorption wavelength; and at least one detector (18) for detecting the emitted light (10); wherein the laser (8) and the detector (18) are arranged in such a way that the light (10) emitted by the laser (8) is conducted through the flow-through chamber (2) along at least two different paths before said light hits the detector (18), and wherein the device has two lasers (8) which emit light of different wavelengths. The invention further relates to a method for producing a flow-through chamber for such a device.Type: ApplicationFiled: January 19, 2015Publication date: November 17, 2016Inventors: Lutz RISSING, Stephanie HOLZ, Dominik HOHEISEL