Patents by Inventor Peter Wraight

Peter Wraight 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).

  • Patent number: 8536517
    Abstract: Methods and related systems are described for the detection of nuclear radiation. The system can include a tool body adapted to be deployed in a wellbore and a scintillator material that intrinsically generates radiation. The scintillator material is mounted within the tool body. A photodetection system is coupled to the scintillator material, and mounted within the tool body. Features in a spectrum associated with a scintillation material's intrinsic radioactive decay are used for the determination of one or more parameter's of the response function of the radiation detector system.
    Type: Grant
    Filed: February 26, 2010
    Date of Patent: September 17, 2013
    Assignee: Schlumberger Technology Corporation
    Inventors: Markus Berheide, James A. Grau, Bradley Albert Roscoe, Christian Stoller, Peter Wraight, Matthieu Simon
  • Publication number: 20130208841
    Abstract: Disclosed is a radiation logging tool, comprising a tool housing; a compact generator that produces radiation; a power supply coupled to the compact generator; and control circuitry. Embodiments of the compact generator comprise a generator vacuum tube comprising a source generating charged particles, and a target onto which the charged particles are directed; and a high voltage supply comprising a high voltage multiplier ladder located laterally adjacent to the generator vacuum tube. The high voltage supply applies a high voltage between the source and the target to accelerate the charged particles to a predetermined energy level. The compact generator also includes an electrical coupling between an output of the high voltage supply and the target of the generator vacuum tube to accommodate the collocated positions of the generator vacuum tube and the high voltage power supply.
    Type: Application
    Filed: November 15, 2010
    Publication date: August 15, 2013
    Inventors: Luke T. Perkins, Christian Stoller, Peter Wraight
  • Publication number: 20130208840
    Abstract: Various embodiments for shortening the overall length of a pulsed neutron generator having a high voltage power supply are disclosed, including but not limited to, providing the plurality of stages of a high voltage power supply wrapped circumferentially or helically about a radiation generator tube. Various techniques for reducing voltage differentials and mitigating the risk of arcing in these embodiments are also disclosed.
    Type: Application
    Filed: November 15, 2010
    Publication date: August 15, 2013
    Inventors: Joel Lee Groves, Luke T. Perkins, Fabien Guizelin, Peter Wraight
  • Publication number: 20120199730
    Abstract: A well logging instrument includes an instrument housing to traverse a wellbore penetrating subsurface formations. An electrically operated energy source that emits ionizing radiation is disposed inside the housing. An insulating sleeve is disposed between the energy source and an interior wall of the housing. The insulating sleeve comprises a thin dielectric film arranged in a plurality of tightly fitting layers of dielectric material disposed adjacent to each other and successively. A thickness of each layer and a number of layers is selected to provide a dielectric strength sufficient to electrically insulate the energy source from the housing and to provide a selected resistance to dielectric failure resulting from the ionizing radiation.
    Type: Application
    Filed: February 6, 2012
    Publication date: August 9, 2012
    Inventors: Leo Chirovsky, Anthony Durkowski, Kevin Hiles, Jani Reijonen, Matthieu Simon, Peter Wraight
  • Publication number: 20120138782
    Abstract: Logging-while-drilling tools incorporating an electronic radiation generator, such as an electronic X-ray generator, and a method for using the same are provided. One example of such a logging-while-drilling tool may include a circumferential drill collar, a chassis disposed radially interior to the drill collar, and an electronic X-ray generator and an X-ray detector disposed within the chassis. The electronic X-ray generator may emit X-rays out of the logging-while-drilling tool into a subterranean formation. The X-ray detector may detect X-rays that return to the logging-while-drilling tool after scattering in the subterranean formation, which may be used to determine a density and/or a lithology of the subterranean formation.
    Type: Application
    Filed: December 3, 2010
    Publication date: June 7, 2012
    Inventors: Matthieu Simon, Peter Wraight, Christian Stoller, Kenneth E. Stephenson, Andrew Bazarko
  • Publication number: 20120126105
    Abstract: A method and apparatus for obtaining neutron images of a rock formation are provided. The neutron images can be obtained from a tool in a logging-while-drilling system but which need not rotate to obtain neutron data from a plurality of azimuthal orientations.
    Type: Application
    Filed: November 19, 2010
    Publication date: May 24, 2012
    Inventors: MICHAEL EVANS, Peter Wraight, Christian Stoller, Avto Tkabladze
  • Publication number: 20120119076
    Abstract: The invention relates to methods and apparatus for determining a downhole parameter in an underbalanced drilling environment which include: selectively activating a first fluid flowing from the formation through a wellbore while under balanced drilled; detecting the activated first fluid, and determining a depth at which said fluid enters the wellbore.
    Type: Application
    Filed: January 25, 2012
    Publication date: May 17, 2012
    Inventors: John Edwards, Christian Stoller, Peter Wraight, Roger Griffiths, Nicolas Renoux
  • Patent number: 8173953
    Abstract: Systems and methods for stabilizing the gain of a gamma-ray spectroscopy system are provided. In accordance with one embodiment, a method of stabilizing the gain of a gamma-ray spectroscopy system may include generating light corresponding to gamma-rays detected from a geological formation using a scintillator having a natural radioactivity, generating an electrical signal corresponding to the light, and stabilizing the gain of the electrical signal based on the natural radioactivity of the scintillator. The scintillator may contain, for example, naturally radioactive elements such as Lutetium or Lanthanum.
    Type: Grant
    Filed: November 10, 2008
    Date of Patent: May 8, 2012
    Assignee: Schlumberger Technology Corporation
    Inventors: Christian Stoller, Peter Wraight, Matthieu Simon
  • Patent number: 8143570
    Abstract: The invention relates to methods and apparatus for determining a downhole parameter in an underbalanced drilling environment which include: selectively activating a first fluid flowing from the formation through a wellbore while under balanced drilled; detecting the activated first fluid, and determining a depth at which said fluid enters the wellbore.
    Type: Grant
    Filed: August 28, 2008
    Date of Patent: March 27, 2012
    Assignee: Schlumberger Technology Corporation
    Inventors: John Edwards, Christian Stoller, Peter Wraight, Roger Griffiths, Nicolas Renoux
  • Publication number: 20110260044
    Abstract: Systems and methods for neutron porosity well logging with high precision and reduced lithology effects are provided. In accordance with an embodiment, a downhole neutron porosity tool may include a neutron source, a neutron monitor, a neutron detector, and data processing circuitry. The neutron source may emit neutrons into a subterranean formation while the neutron monitor detects a count of neutrons proportional to the neutrons emitted. The neutron detector may detect a count of neutrons that scatters off the subterranean formation. The data processing circuitry may determine an environmentally corrected porosity of the subterranean formation based at least in part on the count rate of neutrons scattered off the subterranean formation normalized to the count rate of neutrons proportional to the neutrons emitted by the neutron source.
    Type: Application
    Filed: April 21, 2010
    Publication date: October 27, 2011
    Inventors: Peter Wraight, James Thornton, Bradley A. Roscoe
  • Publication number: 20110198488
    Abstract: Systems and methods for measuring neutron-induced activation gamma-rays in a subterranean formation are provided. In one example, a downhole tool for measuring neutron-induced activation gamma-rays may include a neutron source and a gamma-ray detector. The neutron source may emit neutrons according to a pulsing scheme that includes a delay between two pulses. The delay may be sufficient to allow substantially all neutron capture events due to the emitted neutrons to cease. The gamma-ray detector may be configured to detect activation gamma-rays produced when elements activated by the emitted neutrons decay to a non-radioactive state.
    Type: Application
    Filed: June 26, 2009
    Publication date: August 18, 2011
    Inventors: Chritian Stoller, Peter Wraight, Brad Roscoe
  • Patent number: 7991111
    Abstract: An apparatus and method for determining the density and other properties of a formation surrounding a borehole using a high voltage x-ray generator. One embodiment comprises a stable compact x-ray generator capable of providing radiation with energy of 250 keV and higher while operating at temperatures equal to or greater than 125° C. In another embodiment, radiation is passed from an x-ray generator into the formation; reflected radiation is detected by a short spaced radiation detector and a long spaced radiation detector. The output of these detectors is then used to determine the density of the formation. In one embodiment, a reference radiation detector monitors a filtered radiation signal. The output of this detector is used to control at least one of the acceleration voltage and beam current of the x-ray generator.
    Type: Grant
    Filed: September 14, 2010
    Date of Patent: August 2, 2011
    Assignee: Schlumberger Technology Corporation
    Inventors: Peter Wraight, Arthur J. Becker, Joel L. Groves, Christian Stoller
  • Publication number: 20110114830
    Abstract: Systems, methods, and devices with improved electrode configuration for downhole nuclear radiation generators are provided. For example, one embodiment of a nuclear radiation generator capable of downhole operation may include a charged particle source, a target material, and an acceleration column between the charged particle source and the target material. The acceleration column may include several electrodes shaped such that substantially no electrode material from the electrodes is sputtered onto an insulator surface of the acceleration column during normal downhole operation.
    Type: Application
    Filed: November 16, 2009
    Publication date: May 19, 2011
    Inventors: Jani Reijonen, Luke T. Perkins, Frederic Gicquiel, Christian Stoller, Peter Wraight
  • Patent number: 7903782
    Abstract: An apparatus for determining fractional amounts of each phase of a multiple phase fluid includes an x-ray generator includes a sample chamber is configured to admit therein a sample of fluid for analysis. The chamber is disposed in a radiation path output from the generator. A filter is disposed in the radiation path between the output of the generator and the radiation input of the sample chamber. A first radiation detector is positioned in a radiation path from the sample chamber after radiation has passed through the sample chamber. A thickness and a material of the filter are selected to optimize resolution of radiation detected by the first detector to changes in volume fraction of oil and water in the fluid sample when a gas fraction thereof is between about 90 to 100 percent.
    Type: Grant
    Filed: December 19, 2007
    Date of Patent: March 8, 2011
    Assignee: Schlumberger Technology Corporation
    Inventors: Joel L. Groves, Etienne Vallee, Peter Wraight
  • Publication number: 20110002443
    Abstract: An apparatus and method for determining the density and other properties of a formation surrounding a borehole using a high voltage x-ray generator. One embodiment comprises a stable compact x-ray generator capable of providing radiation with energy of 250 keV and higher while operating at temperatures equal to or greater than 125° C. In another embodiment, radiation is passed from an x-ray generator into the formation; reflected radiation is detected by a short spaced radiation detector and a long spaced radiation detector. The output of these detectors is then used to determine the density of the formation. In one embodiment, a reference radiation detector monitors a filtered radiation signal. The output of this detector is used to control at least one of the acceleration voltage and beam current of the x-ray generator.
    Type: Application
    Filed: September 14, 2010
    Publication date: January 6, 2011
    Inventors: Peter Wraight, Arthur J. Becker, Joel L. Groves, Christian Stoller
  • Publication number: 20100301198
    Abstract: Methods and related systems are described for the detection of nuclear radiation. The system can include a scintillator material that intrinsically generates radiation and a photodetection system coupled to the scintillator material and adapted to generate electrical signals based on light emitted from the scintillator material. A processing system adapted and programmed to receive the electrical signals, to generate a count rate reference value based at least in part on electrical signals generated in response to the light emitted from the scintillator material due to the intrinsically generated radiation.
    Type: Application
    Filed: February 26, 2010
    Publication date: December 2, 2010
    Applicant: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Markus Berheide, James A. Grau, Bradley Albert Roscoe, Peter Wraight
  • Patent number: 7817781
    Abstract: An apparatus and method for determining the density and other properties of a formation surrounding a borehole using a high voltage x-ray generator. One embodiment comprises a stable compact x-ray generator capable of providing radiation with energy of 250 keV and higher while operating at temperatures equal to or greater than 125° C. In another embodiment, radiation is passed from an x-ray generator into the formation; reflected radiation is detected by a short spaced radiation detector and a long spaced radiation detector. The output of these detectors is then used to determine the density of the formation. In one embodiment, a reference radiation detector monitors a filtered radiation signal. The output of this detector is used to control at least one of the acceleration voltage and beam current of the x-ray generator.
    Type: Grant
    Filed: July 15, 2009
    Date of Patent: October 19, 2010
    Assignee: Schlumberger Technology Corporation
    Inventors: Peter Wraight, Arthur J. Becker, Joel L. Groves, Christian Stoller
  • Publication number: 20100243877
    Abstract: Methods and related systems are described for the detection of nuclear radiation. The system can include a tool body adapted to be deployed in a wellbore and a scintillator material that intrinsically generates radiation. The scintillator material is mounted within the tool body. A photodetection system is coupled to the scintillator material, and mounted within the tool body. Features in a spectrum associated with a scintillation material's intrinsic radioactive decay are used for the determination of one or more parameter's of the response function of the radiation detector system.
    Type: Application
    Filed: February 26, 2010
    Publication date: September 30, 2010
    Applicant: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Markus Berheide, James A. Grau, Bradley Albert Roscoe, Christian Stoller, Peter Wraight, Matthieu Simon
  • Publication number: 20100116978
    Abstract: Systems and methods for stabilizing the gain of a gamma-ray spectroscopy system are provided. In accordance with one embodiment, a method of stabilizing the gain of a gamma-ray spectroscopy system may include generating light corresponding to gamma-rays detected from a geological formation using a scintillator having a natural radioactivity, generating an electrical signal corresponding to the light, and stabilizing the gain of the electrical signal based on the natural radioactivity of the scintillator. The scintillator may contain, for example, naturally radioactive elements such as Lutetium or Lanthanum.
    Type: Application
    Filed: November 10, 2008
    Publication date: May 13, 2010
    Inventors: Christian Stoller, Peter Wraight, Matthieu Simon
  • Patent number: 7684540
    Abstract: An apparatus and method for determining the phase fraction of a fluid collected downhole is shown comprising an x-ray generator, a filter, a sample cell, and a radiation detector. The filter produces a radiation spectrum with a high energy portion and a low energy portion. Filtered radiation is passed through a sample fluid and the resulting attenuated radiation signal is used in calculating the phase fractions of oil, water, and gas in the sample fluid. In one embodiment, a second reference radiation detector measures the radiation directly from the x-ray generator and this measurement is used in normalizing the fraction result. The ratio of the high energy signal to low energy signal of the reference detector is used in controlling the input voltage of the x-ray generator thus ensuring a stable spectrum.
    Type: Grant
    Filed: June 20, 2006
    Date of Patent: March 23, 2010
    Assignee: Schlumberger Technology Corporation
    Inventors: Joel Groves, Etienne Vallee, Peter Wraight