Patents Assigned to BAKER HUGHES, A GE COMPANY
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Patent number: 10746016Abstract: Downhole fiber optic interrogation systems are described. The systems include a fiber optic control system, a first sensing system, a second sensing system, an optical fiber disposed within a well, and an optical switch arranged between the optical fiber and the first and second sensing systems, wherein the fiber optic control system performs time division multiplex control of the optical switch wherein the first sensing system is operably connected to the optical fiber and the second sensing system is not connected to the optical fiber, and further controls the optical switch such that the second sensing system is operably connected to the optical fiber and the first sensing system is not connected to the optical fiber.Type: GrantFiled: August 21, 2018Date of Patent: August 18, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Alexander Michael Barry, William Albert Johnston, Ian Mitchell
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Patent number: 10745997Abstract: A tubing pressure insensitive failsafe wireline retrievable safety valve including a tool housing, a flow tube disposed within the tool housing, an actuation piston disposed in the tool housing and operably connected to the flow tube, the actuation piston having an actuation pressure side and a relatively lower pressure chamber side, a fluid pathway between a potential leak site for the valve and the relatively lower pressure chamber side of the piston. A borehole system having a tubing pressure insensitive failsafe wireline retrievable safety valve. A tubing pressure insensitive failsafe wireline retrievable safety valve.Type: GrantFiled: June 6, 2018Date of Patent: August 18, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: John Burris, Jason Edwards
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Patent number: 10746681Abstract: An electrode includes a structure comprising a porous material and an electrically-conductive liquid covering at least a portion of the porous material, wherein the electrode is configured to be immersed in fluids of interest, the electrically-conductive liquid being immiscible in the fluids of interest.Type: GrantFiled: April 3, 2018Date of Patent: August 18, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventor: Rocco DiFoggio
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Patent number: 10746013Abstract: A method for selecting drilling parameters for drilling a borehole penetrating the earth with a drill string includes: varying a frequency of an excitation force applied to the drill string using an excitation device controlled by a drill string controller and measuring vibration-related amplitudes of the drill string due to the applied excitation force using a vibration sensor to provide amplitude measurements. The method further includes determining one or more modal properties comprising one or more eigenfrequencies of the drill string using the amplitude measurements and selecting drilling parameters that apply an excitation force at a frequency that avoids a selected range of frequencies that bound the one or more eigenfrequencies.Type: GrantFiled: May 29, 2015Date of Patent: August 18, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventor: Andreas Hohl
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Publication number: 20200259593Abstract: A robust network telemetry repeater system exploits the repeater structure of data propagation and transmission and reception bi-directionality to increase network robustness. For example, multiple perceived receive attempts are created with no additional overhead. The system can be configured whereby nodes “hear” the transmissions of both adjacent and non-adjacent nodes forming implicit acknowledgement (“Acks”), and originating nodes can retransmit until implicit acknowledgments (“Acks”) are “heard,” indicating a successful link relay. Implicit acknowledgment can be applied to bidirectional networks, and bidirectional action can enable all nodes in the network to know the status of all other nodes.Type: ApplicationFiled: April 30, 2020Publication date: August 13, 2020Applicant: Baker Hughes, a GE company, LLCInventors: John-Peter van Zelm, Celine J. Martineau
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Patent number: 10738574Abstract: An inflow promotion arrangement including a housing; and a promotion configuration within the housing, the promotion configuration actuatable by fluid from a relatively higher productivity index zone of a wellbore.Type: GrantFiled: August 17, 2018Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Tarik Abdelfattah, Jose Rafael Gonzalez
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Patent number: 10738576Abstract: A method of screening a plurality of fluids for an effectiveness in enhancing oil recovery comprises introducing a petroleum hydrocarbon into a plurality of separate fluid channels to saturate the fluid channels, each of the fluid channels having a porous structure configured to represent a condition of an earth formation; injecting a plurality of aqueous based fluids into the fluid channels; imaging the fluid channels to provide a plurality of images; analyzing the images to determine amounts of the petroleum hydrocarbon remain in the fluid channels after injection of the aqueous based fluids; and determining an effectiveness of the aqueous based fluids in forcing the petroleum hydrocarbon out of the fluid channels.Type: GrantFiled: January 15, 2019Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Brett D. Chandler, Jihye Kim, Eric Willmott
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Patent number: 10739489Abstract: An embodiment of a method of performing a nuclear magnetic resonance (NMR) measurement includes disposing a NMR measurement device in a carrier in an earth formation, applying a static magnetic field into a formation, and emitting a plurality of pulse sequences into the formation, the plurality of pulse sequences including at least a first pulse sequence having a first wait time and a second pulse sequence having a second wait time. The method also includes receiving a long wait-time echo train based on the first pulse sequence and a short wait-time echo train based on the second pulse sequence. The method further includes transforming, by a processor, the echo trains into volumetric portions including a first fluid volumetric portion, estimating a longitudinal relaxation time for the first fluid volumetric portion; and identifying whether the first fluid volumetric portion is gas or light oil based on the estimated longitudinal relaxation time.Type: GrantFiled: January 15, 2016Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventor: Radu Coman
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Patent number: 10739318Abstract: A detection system includes a first sensor configured to send a first ultrasonic pulse toward an object in a blowout prevention system. The first ultrasonic pulse has a first parameter. The detection system also includes a second sensor spaced from the first sensor and configured to send a second ultrasonic pulse toward the object. The second ultrasonic pulse has a second parameter that is different from the first parameter of the first ultrasonic pulse. The first parameter and the second parameter are one of an amplitude, a frequency, a duration, an emission time, and an excitation code. The second sensor is further configured to receive the first ultrasonic pulse after the first ultrasonic pulse interacts with the object. The detection system is configured to determine that the first ultrasonic pulse received by the second sensor was sent by the first sensor.Type: GrantFiled: April 19, 2017Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Dayu Huang, Emad Andarawis Andarawis, Edward James Nieters, Cheng-Po Chen, Marco Guerriero
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Patent number: 10737321Abstract: A powder metal compact is disclosed. The powder metal compact includes a cellular nanomatrix comprising a nanomatrix material. The powder metal compact also includes a plurality of dispersed particles comprising a particle core material that comprises an Mg—Zr, Mg—Zn—Zr, Mg—Al—Zn—Mn, Mg—Zn—Cu—Mn or Mg—W alloy, or a combination thereof, dispersed in the cellular nanomatrix.Type: GrantFiled: August 1, 2017Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventor: Zhiyue Xu
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Patent number: 10738600Abstract: A method for drilling a borehole penetrating an earth formation includes: drilling a first section of the borehole; notching a wall of the borehole in one or more selected locations with a selected type of notch using a notcher for defined local weakening of the formation; performing a local induced break-out test and/or local fracturing operation on an annulus section of the first section of the borehole between the drill string and a wall of the borehole using a test tool comprising a packer to provide formation stress-state data. The one or more locations is based on the formation stress-state data. The method further includes deriving stress-state of the formation and a fracturing parameter of the formation using the formation stress-state data and drilling a second section of the borehole using the derived stress-state and the fracturing parameter.Type: GrantFiled: May 19, 2017Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Joerg Lehr, Harald Grimmer, Stefan Wessling
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Patent number: 10738570Abstract: A safety valve features a flow tube operated flapper for the normal open and closed positions that can be obtained with one or two control lines to a principal operating piston. Pressure applied to the piston moves the flow tube to rotate the flapper open behind the flow tube. Release of pressure to the principal piston allows a closure spring to return the flow tube up to let the flapper close. A secondary piston can drive the flow tube with applied pressure through a control line. Cycling the applied pressure in combination with an indexing mechanism allows the flapper to be locked open and then released to normal operation. The pistons act as backup for each other as they both drive the flow tube. The flow tube has a clearance fit to the body in the locked open position to exclude debris from the flapper.Type: GrantFiled: August 14, 2019Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Wade A. Miller, John E. Burris
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Patent number: 10738542Abstract: An apparatus for temporarily connecting a first tool part to a second tool part of a tool includes a plurality of frangible members connecting the first tool part to the second tool part. The frangible members break only after being subjected to a predetermined applied force. The frangible members cooperate to differentially resist loading applied to the tool.Type: GrantFiled: October 24, 2017Date of Patent: August 11, 2020Assignee: Baker Hughes, a GE Company, LLCInventors: Mark K. Adam, Mahmoud M. Marzouk, Christopher R. Hern
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Patent number: 10738560Abstract: A sealing system for a flow channel includes a mandrel, a swellable element disposed about the mandrel, and a degradable polymeric element disposed on a surface of the swellable element and configured to delay swelling of the swellable element. The degradable polymeric element comprises one or more of the following: polyurethane; cured cyanate ester; an epoxy; polyimide; unsaturated polyester; or nylon.Type: GrantFiled: April 25, 2017Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Ping Duan, Anil Sadana, Wayne Furlan
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Patent number: 10739269Abstract: A method of analyzing a well sample for a well treatment additive includes contacting the sample with functionalized metallic nanoparticles that contain metallic nanoparticles functionalized with a functional group including a cyano group, a thiol group, a carboxyl group, an amino group, a boronic acid group, an aza group, an ether group, a hydroxyl group, or a combination including at least one of the foregoing; irradiating the sample contacted with the functionalized metallic nanoparticles with electromagnetic radiation at a selected energy level; measuring a Raman spectrum emitted from the sample; and determining presence, type or concentration of the well treatment additive in the sample from the Raman spectrum.Type: GrantFiled: October 18, 2018Date of Patent: August 11, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Sankaran Murugesan, Radhika Suresh, Valery N. Khabashesku, Qusai Darugar, Stephen Mark Heath
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Patent number: 10732312Abstract: An embodiment of a method of predicting a location of one or more features of an earth formation during a downhole operation includes acquiring reference data and identifying one or more reference data sections, each reference data section corresponding to a feature of interest and having an associated depth or depth interval, deploying a drilling assembly and drilling a target borehole in the earth formation, and performing measurements during the operation by a downhole measurement device to generate measurement data. The method also includes performing one or more correlations of the one or more measurement data sections with one or more reference data sections; and predicting at least one of a depth of a subsequent feature of interest located beyond a current carrier depth and a point in time of a future event associated with the subsequent feature of interest based on the correlation.Type: GrantFiled: May 20, 2015Date of Patent: August 4, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventors: Anne Bartetzko, Stefan Wessling
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Patent number: 10731419Abstract: An earth-boring tool may comprise at least one cavity formed in a face thereof. At least one retractable pad residing in the at least one cavity may be coupled to a piston located at least partially within the at least one cavity. Additionally, a valve may be positioned within the earth-boring tool and configured to regulate flow of an incompressible fluid in contact with the piston through an opening of a reservoir. A cartridge may comprise a barrel wall defining a first bore, and a piston comprising at least one retractable pad positioned at least partially within the first bore. The barrel wall and the piston may define a first reservoir within the first bore, and a valve may be positioned and configured to regulate flow through an opening to the first reservoir. Related methods and devices are also disclosed.Type: GrantFiled: May 14, 2018Date of Patent: August 4, 2020Assignee: Baker Hughes, a GE company, LLCInventor: Marcus Oesterberg
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Patent number: 10731447Abstract: An assembly for pumping well fluid from a well includes a production conduit string having a polished bore receptacle. A coiled tubing segment with a power cable is suspended within the production conduit string. A motor, which is secured to the coiled tubing segment and electrically connected with the power cable, drives a pump. The pump discharge opens into a coiled tubing annulus between the coiled tubing segment and production conduit string. A gas separator has a heavier fluid outlet leading into the pump intake and a lighter fluid outlet leading into the production conduit string below the polished bore receptacle. A seal member extends between the gas separator and the pump in sealing engagement with the polished bore receptacle above the lighter fluid outlet and below the pump discharge.Type: GrantFiled: September 29, 2018Date of Patent: August 4, 2020Assignee: BAKER HUGHES, A GE COMPANYInventor: Ahmed Fehri
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Patent number: 10731651Abstract: A submersible well pump assembly includes a pump driven by a motor. The pump has a number of stages, each stage including a diffuser having an annular diffuser inlet with an annular outer wall. Diffuser passages lead downstream and inward from the diffuser inlet. An impeller has a circumferential outer edge adjacent the outer wall of the diffuser inlet. Notches are formed in the circumferential outer edge, defining a serrated configuration.Type: GrantFiled: January 19, 2017Date of Patent: August 4, 2020Assignee: Baker Hughes, a GE Company, LLCInventors: Abhay Patil, Mike A. Swatek, Risa Rutter
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Patent number: 10731072Abstract: A method of preventing or mitigating the formation of metal sulfide scale in a fluid is provided. The fluid can be treated with an additive comprising thiamine. The fluid can be a production fluid from an oil and gas well. The production fluid can include crude oil. The fluid can include an aqueous fluid. The aqueous fluid can further include crude oil. The metal sulfide scale can include iron sulfide scale and/or zinc sulfide scale.Type: GrantFiled: November 11, 2016Date of Patent: August 4, 2020Assignee: BAKER HUGHES, A GE COMPANY, LLCInventor: Charles David Armstrong