Patents by Inventor Stig Rune Lennart Tenghamn

Stig Rune Lennart Tenghamn 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: 11871675
    Abstract: A plurality of sensors and a controller are disposed in a marine seismic streamer. Each of the sensors comprises an enclosure having two opposing interior walls, first and second piezoelectric elements disposed on the opposing interior walls, a third piezoelectric element disposed on a flexible substrate within the enclosure between the opposing interior walls, a pressure signal output node and an acceleration signal output node disposed on the exterior surface of the enclosure. A combined pressure signal derived from the pressure signal output nodes of the plural sensors is coupled to a pressure signal input of the controller. A combined acceleration signal derived from the acceleration signal output nodes of the plural sensors is coupled to an acceleration signal input of the controller. The streamer may be towed, and the combined pressure and acceleration signals may be recorded in a computer-readable medium.
    Type: Grant
    Filed: August 23, 2022
    Date of Patent: January 9, 2024
    Assignee: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, David Thomas Booth
  • Patent number: 11852770
    Abstract: Techniques are disclosed relating to marine geophysical surveys. Various output characteristics of a vibratory source may be modified based on whether a source is targeting an identified portion of a survey area. The portion of the survey area may be detected during the survey or may be pre-identified. In some embodiments, a survey system drives a vibratory source using digital codes having different lengths based on whether the source is targeting an identified portion of a survey area. The disclosed techniques may improve imaging of geology under certain types of formations or may reduce environmental impact, in various embodiments.
    Type: Grant
    Filed: October 17, 2019
    Date of Patent: December 26, 2023
    Assignee: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, Manuel Beitz, Christian Strand
  • Publication number: 20220406988
    Abstract: A plurality of sensors and a controller are disposed in a marine seismic streamer. Each of the sensors comprises an enclosure having two opposing interior walls, first and second piezoelectric elements disposed on the opposing interior walls, a third piezoelectric element disposed on a flexible substrate within the enclosure between the opposing interior walls, a pressure signal output node and an acceleration signal output node disposed on the exterior surface of the enclosure. A combined pressure signal derived from the pressure signal output nodes of the plural sensors is coupled to a pressure signal input of the controller. A combined acceleration signal derived from the acceleration signal output nodes of the plural sensors is coupled to an acceleration signal input of the controller. The streamer may be towed, and the combined pressure and acceleration signals may be recorded in a computer-readable medium.
    Type: Application
    Filed: August 23, 2022
    Publication date: December 22, 2022
    Applicant: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, David Thomas Booth
  • Patent number: 11366242
    Abstract: Embodiments may be directed to marine geophysical surveying and associated methods. At least one embodiment may be directed to incorporation of a lock mechanism in a sensor streamer that interlocks the outer jacket with one or more of the spacers to prevent relative rotation between the outer jacket. An embodiment may provide a sensor streamer that includes an outer jacket, a plurality of spacers, and a locking mechanism. The outer jacket may be elongated in an axial direction and comprise an outer jacket surface and an inner jacket surface. The plurality of spacers may be positioned in the outer jacket at spaced apart locations in the axial direction, wherein each of the plurality of spacers comprises a spacer body having an outer spacer surface. The locking mechanism may interlock the outer jacket with at least one of the plurality of spacers.
    Type: Grant
    Filed: August 15, 2019
    Date of Patent: June 21, 2022
    Assignee: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, Nicholas George, Andre Stenzel, Ramon Martinez
  • Patent number: 11307326
    Abstract: Techniques are disclosed relating to calibrating sensors configured to measure both pressure and acceleration. In various embodiments, a system detects a first voltage produce by a first piezoelectric material in a hydrophone when the hydrophone is exposed to an acceleration and detects a second voltage produced by a second piezoelectric material in the hydrophone when the hydrophone is exposed to the acceleration. The system, in some embodiments, compares the first voltage and the second voltage. Based on the comparing of the first and second voltages, in some embodiments, the system determines a resistance for a variable resistor coupled to one of the first and second piezoelectric materials.
    Type: Grant
    Filed: April 24, 2018
    Date of Patent: April 19, 2022
    Assignee: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, Frederick James Barr
  • Patent number: 11294083
    Abstract: Techniques are disclosed relating to geophysical surveying. In various embodiments, a computer system may access seismic data for a geological formation, where the seismic data is recorded, using one or more sensors, during a seismic survey in which a first vibratory source was driven using a first digital code for at least a first time interval. The first digital code, in some embodiments, may include a first plurality of subsections corresponding to portions of the first time interval. In some embodiments, the computer system may image a first location of the geological formation using a correlation of only a first sub-section of the first plurality of sub-sections with the seismic data. Further, in some embodiments, the computer system may image a second location of the geological formation using a correlation of two or more of the first plurality of sub-sections with the seismic data.
    Type: Grant
    Filed: August 6, 2018
    Date of Patent: April 5, 2022
    Assignee: PGS GEOPHYSICAL AS
    Inventors: Stig Rune Lennart Tenghamn, Manuel Beitz, Christian Strand
  • Patent number: 11119230
    Abstract: Techniques are disclosed relating to geophysical surveying. In various embodiments, a marine survey vessel may tow a plurality of streamers that each include a plurality of seismic sensors. Further, the survey vessel may tow a plurality of vibratory sources. In various embodiments, a first sweep may be performed, using one or more of the plurality of vibratory sources, for a first time interval. Further, in various embodiments, disclosed techniques may include recording, during the first time interval using the plurality of seismic sensors, seismic data on a tangible, computer-readable medium, thereby creating a geophysical data product.
    Type: Grant
    Filed: August 6, 2018
    Date of Patent: September 14, 2021
    Assignee: PGS GEOPHYSICAL AS
    Inventors: Stig Rune Lennart Tenghamn, Manuel Beitz, Christian Strand
  • Publication number: 20210190985
    Abstract: Marine survey data can be acquired at a tow line. The tow line is designed to be coupled between a marine survey vessel and a towed object. A receiver is associated with the tow line and designed to receive marine survey data at a location of the tow line. The receiver can be an optical fiber or other type of receiver.
    Type: Application
    Filed: December 14, 2020
    Publication date: June 24, 2021
    Applicant: PGS Geophysical AS
    Inventors: Andrew Samuel Long, Stig Rune Lennart Tenghamn
  • Publication number: 20210141117
    Abstract: A long-offset acquisition system includes a source vessel; a signal source coupled to the source vessel; and a long-offset streamer coupled to a survey vessel and including an aft-most receiver, an offset of the aft-most receiver being at least 12 km. A long-offset acquisition method includes towing a signal source with a source vessel; towing a first long-offset streamer with a survey vessel; and acquiring data with receivers of the first long-offset streamer. A long-offset acquisition method includes towing a signal source with a first survey vessel; towing a long-offset streamer with a second survey vessel, the long-offset streamer having a plurality of receivers; actuating the signal source while an offset between the signal source and at least one of the plurality of receivers is at least 15 km; and acquiring data with receivers of the long-offset streamer.
    Type: Application
    Filed: June 19, 2019
    Publication date: May 13, 2021
    Inventors: Stig Rune Lennart TENGHAMN, Neil PADDY, Manuel BEITZ
  • Publication number: 20210124074
    Abstract: A marine streamer includes: an optical fiber disposed along a length of the streamer; a light source; and light analysis equipment, wherein: the length is at least 20 km, a diameter of the streamer is no more than 25 mm, the optical fiber, light source, and light analysis equipment are configured to provide a receiver sampling density of at least 1 per meter, and the streamer is configured to be towed nominally horizontally through a body of water. A method of marine surveying includes: towing a streamer spread at a first depth of 10 m to 30 m with a survey vessel; and towing Distributed Acoustic Sensing (DAS) streamers at a second depth of greater than 30 m. A method includes: acquiring long-offset data with sensors distributed along the DAS streamers.
    Type: Application
    Filed: October 7, 2020
    Publication date: April 29, 2021
    Inventor: Stig Rune Lennart TENGHAMN
  • Publication number: 20210124073
    Abstract: A method and apparatus includes: towing a first source with a source vessel; towing a second source with a survey vessel, the survey vessel following the source vessel by at least 5 km; towing a streamer spread at a first depth with the survey vessel; and towing a pair of long-offset streamers at a second depth and following the source vessel by at least 5 km, wherein: the first depth is 10 m to 30 m, and the second depth is greater than 30 m. A method and apparatus includes: towing a first source with a source vessel; towing a second source with a survey vessel, the first source and the second source being separated by at least 5 km; towing a streamer spread at a first depth with the survey vessel; towing a pair of long-offset streamers at a second depth, wherein: the first depth is between 10 m and 30 m, and the second depth is greater than 30 m; acquiring long-offset data with long-offset sensors distributed along the long-offset streamers; and constructing a velocity model with the long-offset data.
    Type: Application
    Filed: May 22, 2020
    Publication date: April 29, 2021
    Inventor: Stig Rune Lennart TENGHAMN
  • Publication number: 20200408945
    Abstract: Techniques are disclosed relating to marine geophysical surveys. Various output characteristics of a vibratory source may be modified based on whether a source is targeting an identified portion of a survey area. The portion of the survey area may be detected during the survey or may be pre-identified. In some embodiments, a survey system drives a vibratory source using digital codes having different lengths based on whether the source is targeting an identified portion of a survey area. The disclosed techniques may improve imaging of geology under certain types of formations or may reduce environmental impact, in various embodiments.
    Type: Application
    Filed: October 17, 2019
    Publication date: December 31, 2020
    Inventors: Stig Rune Lennart Tenghamn, Manuel Beitz, Christian Strand
  • Publication number: 20200393590
    Abstract: A method and apparatus for generating a geophysical data product by a process of: acquiring standard-offset survey data for a subterranean formation with a standard-offset survey spread towed at a standard-offset spread depth; acquiring long-offset survey data for the subterranean formation with a long-offset streamer towed at a long-offset streamer depth; and assembling the long-offset survey data into a set of grouped-long-offset survey data characterized by a plurality of receiver groupings and a group length.
    Type: Application
    Filed: May 22, 2020
    Publication date: December 17, 2020
    Inventor: Stig Rune Lennart TENGHAMN
  • Patent number: 10838107
    Abstract: Techniques are disclosed relating to sensors configured to measure acceleration and pressure. In various embodiments, an apparatus includes a first hydrophone sensor having a first piezoelectric material and a first housing structure and a second hydrophone sensor having a second piezoelectric material and a second housing structure. In some embodiments, the apparatus includes a first pair of wires configured to provide a first differential voltage and a second pair of wires configured to provide a second differential voltage. The first pair of wires may be coupled to the first hydrophone sensor and the second pair of wires may be coupled to the second hydrophone sensor. In various embodiments, the apparatus is configured to determine, based on the first and second differential voltages, a pressure and an acceleration experienced by the first and second hydrophone sensors.
    Type: Grant
    Filed: April 24, 2018
    Date of Patent: November 17, 2020
    Assignee: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, Frederick James Barr
  • Publication number: 20200303620
    Abstract: Seismic pressure and particle motion measurement can include simultaneously determining a first voltage signal and a second voltage signal from each one of a plurality of sensors located in a streamer using triple piezoelectric structures. The first voltage signal can represent pressure of a respective one of the plurality of sensors, and the second voltage signal can represent acceleration of a respective one of the plurality of sensors. Vertical components of the acceleration can be determined based on the simultaneous determination, and noise associated with the sensor can be reduced based on the first voltage signal, the second voltage signal, and the vertical components.
    Type: Application
    Filed: December 17, 2018
    Publication date: September 24, 2020
    Applicant: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, David Thomas Booth
  • Patent number: 10670747
    Abstract: Embodiments relate to relate to marine vibrators that incorporate one or more piston plates that act on the surrounding water to produce acoustic energy. An example marine vibrator may comprise: a containment housing; a piston plate; a fixture coupled to the containment housing; a mechanical spring element coupled to the piston plate and the fixture; a driver disposed in the marine vibrator, wherein the driver is coupled to the piston plate and the fixture; and a container coupled to the piston plate, wherein the container is configured to hold a variable mass load; wherein the marine vibrator has a resonance frequency selectable based at least in part on the variable mass load.
    Type: Grant
    Filed: May 12, 2016
    Date of Patent: June 2, 2020
    Assignee: PGS Geophysical AS
    Inventor: Stig Rune Lennart Tenghamn
  • Patent number: 10670760
    Abstract: A method for geophysical source steering including towing a first geophysical source through a body of water; and adjusting a first steering parameter of the first geophysical source while towing the first geophysical source. An apparatus for geophysical source steering including a first marine vibrator source having a first housing structure; a first vibrational surface functionally coupled to the first housing structure such that at least a portion of the first vibrational surface can vibrate relative to the first housing structure; and first steering control equipment.
    Type: Grant
    Filed: October 24, 2017
    Date of Patent: June 2, 2020
    Assignee: PGS Geophysical AS
    Inventors: Anders Göran Mattsson, Stig Rune Lennart Tenghamn
  • Patent number: 10627540
    Abstract: Techniques are disclosed relating to control of seismic sources such as marine vibrators. According to some embodiments, iterative learning control (ILC) systems may be used to control such seismic sources. According to some embodiments, local sensor(s) placed in, on, or near a seismic source and/or remote sensors placed in the far-field region may be used to determine a transfer function for the seismic source for such ILC control.
    Type: Grant
    Filed: December 30, 2014
    Date of Patent: April 21, 2020
    Assignee: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, Bo Magnus Bernhardsson, Nils Gunnar Olof Kröling, Per Birger Gunnarsson
  • Publication number: 20200072991
    Abstract: Embodiments relate to marine seismic vibrators and associated methods of use. An embodiment provides a marine seismic vibrator comprising: a shell comprising endbeams and shell side portions coupled to the endbeams, wherein each of the shell side portions has a midline between the endbeams, wherein each of the shell side portions has a thinner portion at the midline to force each of the shell side portions to bend at the midline; a driver disposed within the shell; and a pair of spring elements disposed within the shell on either side of the driver, wherein the pair of spring elements are coupled to the driver and to the shell such that movement of the driver is transferred to the shell by way of the spring elements, wherein the pair of spring elements have a second mode of oscillation that provides a second resonance frequency within the operational frequency range.
    Type: Application
    Filed: November 1, 2019
    Publication date: March 5, 2020
    Applicant: PGS Geophysical AS
    Inventor: Stig Rune Lennart Tenghamn
  • Publication number: 20200064504
    Abstract: Embodiments may be directed to marine geophysical surveying and associated methods. At least one embodiment may be directed to incorporation of a lock mechanism in a sensor streamer that interlocks the outer jacket with one or more of the spacers to prevent relative rotation between the outer jacket. An embodiment may provide a sensor streamer that includes an outer jacket, a plurality of spacers, and a locking mechanism. The outer jacket may be elongated in an axial direction and comprise an outer jacket surface and an inner jacket surface. The plurality of spacers may be positioned in the outer jacket at spaced apart locations in the axial direction, wherein each of the plurality of spacers comprises a spacer body having an outer spacer surface. The locking mechanism may interlock the outer jacket with at least one of the plurality of spacers.
    Type: Application
    Filed: August 15, 2019
    Publication date: February 27, 2020
    Applicant: PGS Geophysical AS
    Inventors: Stig Rune Lennart Tenghamn, Nicholas George, Andre Stenzel, Ramon Martinez