Patents by Inventor Clive Menezes
Clive Menezes 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: 11174706Abstract: A pipe in pipe electric heater assembly comprising a work string comprising an inner pipe and an outer pipe and a heater element, wherein the heater element is provided with power supplied by the inner pipe and the outer pipe acting at least as conductors and associated methods.Type: GrantFiled: January 11, 2012Date of Patent: November 16, 2021Assignee: Halliburton Energy Services, Inc.Inventors: Richard Thomas Hay, Clive Menezes
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Patent number: 10119388Abstract: A retrievable tool for steering through an earth formation includes a first tool assembly and a tilted antenna attached to the first tool assembly. The tool also includes a second tool assembly attached to the first tool assembly and a tilted antenna attached to the second tool assembly. The first tool assembly attaches to the second tool assembly so that the antennas are tilted in predetermined directions. The tilted antennas are transmitter antennas or receiver antennas. Each tool assembly is a tubular cylinder with a longitudinal axis running the length of the cylinder, wherein the tubular cylinder has two ends, each end including a rotational attachment mechanism. The tool assemblies attach to each other through their rotational attachment mechanisms. The rotational attachment mechanism may be a screw-on mechanism, press-fit mechanism, or welded mechanism.Type: GrantFiled: June 15, 2012Date of Patent: November 6, 2018Assignee: Halliburton Energy Services, Inc.Inventors: Michael S. Bittar, Clive Menezes, Martin D. Paulk
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Patent number: 9784096Abstract: The present disclosure provides systems and methods for expanded mud pulse telemetry. Certain methods provided include measuring pressure proximate at least one of first and second pressure control modules along a drilling apparatus and telemetering the measured pressure to a surface controller. A command is transmitted from the surface controller to at least one of the first and second pressure control modules or one of first and second controllable flow restrictors via mud pulse telemetry while mud is not being pumped through a main standpipe.Type: GrantFiled: December 28, 2012Date of Patent: October 10, 2017Assignee: Halliburton Energy Services, Inc.Inventors: Clive Menezes, James Randolph Lovorn
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Patent number: 9765599Abstract: An electromagnetic perforation device for well casings includes a coil disposed around a core carried by a mandrel. The device further includes a power supply coupled to a current supply device, which is coupled to said coil. A stabilizing member extends from the mandrel and spaced apart on the mandrel from the coil core. The electromagnetic performance device may be positioned in a well casing, and the current supply device may rapidly supply a current to the coil to created an electromagnetic field in the coil and simultaneously induces a magnetic field in the well casing. The coil, current, and well casing may be selected such that electromagnetic field and the magnetic field produce repulsive magnetic forces that are sufficient to overcome a yield strength of the well casing and perforate the well casing.Type: GrantFiled: May 23, 2016Date of Patent: September 19, 2017Assignee: Halliburton Energy Services, Inc.Inventors: Michael Bittar, Jing Li, Daniel Dorffer, Clive Menezes
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Publication number: 20160265320Abstract: An electromagnetic perforation device for well casings includes a coil disposed around a core carried by a mandrel. The device further includes a power supply coupled to a current supply device, which is coupled to said coil. A stabilizing member extends from the mandrel and spaced apart on the mandrel from the coil core. The electromagnetic performance device may be positioned in a well casing, and the current supply device may rapidly supply a current to the coil to created an electromagnetic field in the coil and simultaneously induces a magnetic field in the well casing. The coil, current, and well casing may be selected such that electromagnetic field and the magnetic field produce repulsive magnetic forces that are sufficient to overcome a yield strength of the well casing and perforate the well casing.Type: ApplicationFiled: May 23, 2016Publication date: September 15, 2016Inventors: Michael Bittar, Jing Li, Daniel Dorffer, Clive Menezes
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Patent number: 9371718Abstract: An electromagnetic perforation device for well casings includes a coil disposed around a core carried by a mandrel. The device further includes a power supply coupled to a current supply device, which is coupled to said coil. A stabilizing member extends from the mandrel and spaced apart on the mandrel from the coil core. The electromagnetic perforation device may be positioned in a well casing, and the current supply device may rapidly supply a current to the coil to created an electromagnetic field in the coil and simultaneously induces a magnetic field in the well casing. The coil, current, and well casing may be selected such that electromagnetic field and the magnetic field produce repulsive magnetic forces that are sufficient to overcome a yield strength of the well casing and perforate the well casing.Type: GrantFiled: November 11, 2010Date of Patent: June 21, 2016Assignee: Halliburton Energy Services, Inc.Inventors: Michael Bittar, Jing Li, Daniel Dorffer, Clive Menezes
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Publication number: 20150275658Abstract: The present disclosure includes systems and methods for expanded mud pulse telemetry. An example method includes measuring pressure proximate at least one of first and second pressure control modules along a drilling apparatus and telemetering the measured pressure to a surface controller. A command is transmitted from the surface controller to at least one of the first and second pressure control modules or one of first and second controllable flow restrictors via mud pulse telemetry while mud is not being pumped through a main standpipe.Type: ApplicationFiled: December 28, 2012Publication date: October 1, 2015Inventors: Clive Menezes, James Randolph Lovorn
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Patent number: 8931579Abstract: In some embodiments, apparatus and systems, as well as methods, may operate to couple a stator to a borehole, and to move a rotor relative to the stator to generate electrical current to power a borehole tool.Type: GrantFiled: October 11, 2005Date of Patent: January 13, 2015Assignee: Halliburton Energy Services, Inc.Inventors: Billy Bankston, Clive Menezes
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Publication number: 20140326504Abstract: A pipe in pipe electric heater assembly comprising a work string comprising an inner pipe and an outer pipe and a heater element, wherein the heater element is provided with power supplied by the inner pipe and the outer pipe acting at least as conductors and associated methods.Type: ApplicationFiled: January 11, 2012Publication date: November 6, 2014Applicant: HALLIBURTON ENERGY SERVICES, INC.Inventors: Richard Thomas Hay, Clive Menezes
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Publication number: 20130213639Abstract: An electromagnetic perforation device for well casings includes a coil disposed around a core carried by a mandrel. The device further includes a power supply coupled to a current supply device, which is coupled to said coil. A stabilizing member extends from the mandrel and spaced apart on the mandrel from the coil core. The electromagnetic perforation device may be positioned in a well casing, and the current supply device may rapidly supply a current to the coil to created an electromagnetic field in the coil and simultaneously induces a magnetic field in the well casing. The coil, current, and well casing may be selected such that electromagnetic field and the magnetic field produce repulsive magnetic forces that are sufficient to overcome a yield strength of the well casing and perforate the well casing.Type: ApplicationFiled: November 11, 2010Publication date: August 22, 2013Applicant: Halliburton Energy Services, Inc.Inventors: Michael Bittar, Jing Li, Daniel Dorffer, Clive Menezes
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Patent number: 8347985Abstract: Multimodal geosteering systems and methods are disclosed. Some disclosed tool embodiments include first and second transmitter-receiver arrangements that make geosteering measurements using different forms of energy (such as acoustic and electromagnetic energy) to provide geosteering measurements that at least indicate a boundary direction but may also indicate a boundary distance. Some disclosed method embodiments include: determining a direction to a bed boundary using measurements with different energy types; and adjusting a drilling direction based at least in part on said determination. Combinations of (or selections between) the different measurements may be made based on, inter alia, measurement range, resolution, and contrast. Some disclosed system embodiments include a memory and a processor. The memory stores geosteering display software that configures the processor to generate an image with different regions based on the different types of geosteering measurements.Type: GrantFiled: April 25, 2008Date of Patent: January 8, 2013Assignee: Halliburton Energy Services, Inc.Inventors: Michael S. Bittar, Jennifer Market, Clive Menezes
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Publication number: 20120249149Abstract: A retrievable tool for steering through an earth formation includes a first tool assembly and a tilted antenna attached to the first tool assembly. The tool also includes a second tool assembly attached to the first tool assembly and a tilted antenna attached to the second tool assembly. The first tool assembly attaches to the second tool assembly so that the antennas are tilted in predetermined directions. The tilted antennas are transmitter antennas or receiver antennas. Each tool assembly is a tubular cylinder with a longitudinal axis running the length of the cylinder, wherein the tubular cylinder has two ends, each end including a rotational attachment mechanism. The tool assemblies attach to each other through their rotational attachment mechanisms. The rotational attachment mechanism may be a screw-on mechanism, press-fit mechanism, or welded mechanism.Type: ApplicationFiled: June 15, 2012Publication date: October 4, 2012Applicant: Halliburton Energy Services, Inc.Inventors: Michael S. BITTAR, Clive MENEZES, Martin D. PAULK
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Publication number: 20110180327Abstract: Multimodal geosteering systems and methods are disclosed. Some disclosed tool embodiments include first and second transmitter-receiver arrangements that make geosteering measurements using different forms of energy (such as acoustic and electromagnetic energy) to provide geosteering measurements that at least indicate a boundary direction but may also indicate a boundary distance. Some disclosed method embodiments include: determining a direction to a bed boundary using measurements with different energy types; and adjusting a drilling direction based at least in part on said determination. Combinations of (or selections between) the different measurements may be made based on, inter alia, measurement range, resolution, and contrast. Some disclosed system embodiments include a memory and a processor. The memory stores geosteering display software that configures the processor to generate an image with different regions based on the different types of geosteering measurements.Type: ApplicationFiled: April 25, 2008Publication date: July 28, 2011Applicant: Halliburton Energy Services, Inc.Inventors: Michael S. Bittar, Jennifer Market, Clive Menezes
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Patent number: 7775276Abstract: An embodiment includes an apparatus that includes a sample carrier adapted to receive a sample and return it to the surface. An embodiment includes a formation tester adapted to load the sample carrier. An embodiment includes a retriever to remove the carrier from the drilling mud. The retriever also includes a device for removing the sample from the carrier.Type: GrantFiled: March 3, 2006Date of Patent: August 17, 2010Assignee: Halliburton Energy Services, Inc.Inventors: Michael T. Pelletier, John C. Welch, Clive Menezes
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Publication number: 20070205021Abstract: An embodiment includes an apparatus that includes a sample carrier adapted to receive a sample and return it to the surface. An embodiment includes a formation tester adapted to load the sample carrier. An embodiment includes a retriever to remove the carrier from the drilling mud. The retriever also includes a device for removing the sample from the carrier.Type: ApplicationFiled: March 3, 2006Publication date: September 6, 2007Inventors: Michael Pelletier, John Welch, Clive Menezes
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Publication number: 20070079989Abstract: In some embodiments, apparatus and systems, as well as methods, may operate to couple a stator to a borehole, and to move a rotor relative to the stator to generate electrical current to power a borehole tool.Type: ApplicationFiled: October 11, 2005Publication date: April 12, 2007Inventors: Billy Bankston, Clive Menezes
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Publication number: 20060248949Abstract: A multi-purpose downhole tool comprising packers for isolating an interval of a downhole formation traversed by a borehole to form a packed-off interval annulus. The tool further comprises a reversible pump and more than one interval access port located between the packers. The ports provide fluid communication with fluid in the packed-off interval annulus. The tool further comprises a fluid conduit system and valves for controlling fluid communication between the interval access ports and the reversible pump. The multi-purpose tool is capable of pumping from the packed-off interval annulus as well as pumping into or “through” the packed-off interval annulus for determining formation pressures as well as introducing well enhancement fluids downhole.Type: ApplicationFiled: May 3, 2005Publication date: November 9, 2006Applicant: Halliburton Energy Services, Inc.Inventors: Gilbert Gregory, David Ball, Russell Somers, Jeffrey Grable, Clive Menezes
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Publication number: 20060102353Abstract: A system for managing the temperature of a thermal component. The system comprises a heat exchanger in thermal contact with the thermal component. The temperature management system also comprises a heat storing temperature management system for removing heat from the thermal component and storing the removed heat within the heat storing temperature management system. The temperature management system further comprises a heat exhausting temperature management system for removing heat from the thermal component and transferring the removed heat to the environment outside the temperature management system.Type: ApplicationFiled: November 12, 2004Publication date: May 18, 2006Applicant: Halliburton Energy Services, Inc.Inventors: Bruce Storm, Haoshi Song, Clive Menezes