Patents by Inventor Mikko K. Jaaskelainen

Mikko K. Jaaskelainen 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: 11578547
    Abstract: Some embodiments of the inventive subject matter improve techniques for measuring downhole attributes. A method for determining a flow rate of a fluid includes positioning a tubular within a wellbore formed in a subsurface formation, wherein a flow of fluid is to move through the tubular. An orifice plate is positioned in the tubular. The orifice plate is movable between a first position and a second position to alter a flow area of the flow of fluid moving through the tubular. The method includes detecting a change in a downhole attribute that changes in response to the alteration of the flow area of the flow of fluid. Sensors positioned within or in communication with an interior of the tubular can detect the change in the downhole attribute. The method further includes determining a flow rate of the flow of fluid based on the detected change in the downhole attribute.
    Type: Grant
    Filed: January 21, 2021
    Date of Patent: February 14, 2023
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Mikko K. Jaaskelainen, Cole Aaron Grandjean
  • Patent number: 11549369
    Abstract: A wellbore optical fiber measurement system for measuring data in a lateral wellbore that includes a flexible optical fiber. The optical fiber includes a waveguide coated with a coating, wherein the optical fiber has an effective density ?efffiber and an effective axial Young modulus Eefffiber and wherein the product ( ? eff f ? i ? b ? e ? r E eff f ? i ? b ? e ? r ) ยท ( 1 - ? w ? a ? t ? e ? r ? eff f ? i ? b ? e ? r ) is greater than 50 kg/m3/GPa. The system also includes a data acquisition unit with a processor operable to obtain strain measurement data of the wellbore from the optical fiber.
    Type: Grant
    Filed: December 10, 2021
    Date of Patent: January 10, 2023
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Michel LeBlanc, Mikko K Jaaskelainen
  • Publication number: 20220412821
    Abstract: A system for downhole measurements. The system may comprise a fiber optic cable that further comprises a transmission fiber and a return fiber. Additionally, the system may comprise a passive optical device optically connected to the transmission fiber and the return fiber, a first wavelength division multiplexer (WDM) optically connected to the transmission fiber, and a second WDM optically connected to the return fiber. The system may further comprise a transmitter and a first Raman pump optically connected to the first WDM and a receiver and a second Raman pump optically connected to the second WDM.
    Type: Application
    Filed: March 14, 2022
    Publication date: December 29, 2022
    Applicant: Halliburton Energy Services, Inc.
    Inventors: Mikko K. Jaaskelainen, Andreas Ellmauthaler, Ira Jeffrey Bush, John Laureto Maida, JR.
  • Publication number: 20220403721
    Abstract: A method is provided. Sensor data regarding a wellbore is received from at least one of a distributed fiber optic sensing line positioned along the wellbore and a plurality of subsurface and surface sensors. Flow models are generated based on the sensor data to optimize production flow. Flow profiles are generated based on the flow models and the sensor data to adjust at least one gas lift valve.
    Type: Application
    Filed: June 17, 2021
    Publication date: December 22, 2022
    Applicant: HALLIBURTON ENERGY SERVICES, INC.
    Inventors: Mikko K. JAASKELAINEN, Shahab Jamall Ghare Tape, Kashyap Navinchand Choksey
  • Publication number: 20220403734
    Abstract: Aspects of the subject technology relate to systems and methods for optimizing production flow monitoring by utilizing data driven in-situ injection. Systems and methods are provided for receiving sensor data from at least one of a distributed fiber optic sensing line positioned along a wellbore and a plurality of subsurface and surface sensors, generating flow models based on the sensor data received from the at least one of the distributed fiber optic sensing line and the plurality of subsurface and surface sensors to optimize production flow, and generating flow profiles based on the flow models and the sensor data received from the at least one of the distributed fiber optic sensing line and the plurality of subsurface and surface sensors to adjust zonal inflow device.
    Type: Application
    Filed: June 17, 2021
    Publication date: December 22, 2022
    Applicant: HALLIBURTON ENERGY SERVICES, INC.
    Inventors: Mikko K. JAASKELAINEN, Shahab Jamali Ghare Tape, Kashyap Navinchand Choksey
  • Publication number: 20220341319
    Abstract: A wellbore system includes a wellbore tubular with local inner diameter variation. The system includes a wellbore tubular that is positionable in a wellbore for producing hydrocarbon fluid. The wellbore tubular includes at least one portion of an inner wall with a greater inner diameter than other portions of the inner wall of the wellbore tubular. The system includes a fiber optic cable of a fiber optic sensing system that is positionable in the wellbore for measuring flow disturbance of production fluid at the at least one portion of the inner wall to monitor hydrocarbon production flow.
    Type: Application
    Filed: April 22, 2021
    Publication date: October 27, 2022
    Inventors: Angus Duthie, Mikko K. Jaaskelainen
  • Publication number: 20220333468
    Abstract: The way in which a fiber optic cable is wrapped around a casing string in a wellbore can be modeled using information from downhole sensor devices. For example, a system can include a fiber optic cable located along a length of a wellbore. The system can also include sensor devices located near the fiber optic cable at various depths to transmit acoustic signals indicating depths and orientations of segments of the fiber optic cable. The system can build a model describing how the fiber optic cable is positioned around the casing string based on the acoustic signals transmitted from the sensor devices. The system can also determine a target position for a perforating gun to perform a perforation operation through the casing string that avoids damaging the fiber optic cable. The system can output the target position for the perforating gun to an electronic device to facilitate the perforation operation.
    Type: Application
    Filed: April 16, 2021
    Publication date: October 20, 2022
    Inventors: Henry Clifford Bland, Mikko K. Jaaskelainen
  • Publication number: 20220228458
    Abstract: A partially dissolvable plug is to be deployed in a position in a wellbore formed in a subsurface formation. The partially dissolvable plug comprises a first portion comprising a dissolvable material that is to dissolve over time after exposure to a downhole ambient environment in the wellbore and a second portion comprising a non-dissolvable material that is to create a flow restriction as the flow of fluid passes through the partially dissolvable plug. The first portion is to prevent a flow of fluid from downhole to a surface of the wellbore until at least a portion of the dissolvable material is dissolved. A flow rate is to be determined based on a detected change in a downhole attribute that is to change in response to the flow of fluid passing through the partially dissolvable plug after at least a portion of the partially dissolvable plug is dissolved.
    Type: Application
    Filed: January 21, 2021
    Publication date: July 21, 2022
    Inventors: Mikko K. Jaaskelainen, Cole Aaron Grandjean
  • Publication number: 20220228451
    Abstract: A method for determining a flow rate of a fluid includes positioning a tubular within a wellbore formed in a subsurface formation, wherein a flow of fluid is to move through the tubular. An orifice plate is positioned in the tubular. The orifice plate is movable between a first position and a second position to alter a flow area of the flow of fluid moving through the tubular. The method includes detecting a change in a downhole attribute that changes in response to the alteration of the flow area of the flow of fluid. Sensors positioned within or in communication with an interior of the tubular can detect the change in the downhole attribute. The method further includes determining a flow rate of the flow of fluid based on the detected change in the downhole attribute. The flow of fluid may be single phase or multiphase.
    Type: Application
    Filed: January 21, 2021
    Publication date: July 21, 2022
    Inventors: Mikko K. Jaaskelainen, Cole Aaron Grandjean
  • Publication number: 20220186612
    Abstract: A distributed fiber sensing system and method of use. The system may comprise an interrogator configured to receive a Brillouin backscattered light from a first sensing region and a second sensing region, a first fiber optic cable optically connected to the interrogator, a proximal circulator, and a distal circulator, and a second fiber optic cable optically connected to the interrogator, the proximal circulator, and the distal circulator. The system may further comprise a downhole fiber optically connected to the first fiber optic cable and the second fiber optic cable and wherein the first sensing region and the second sensing region are disposed on the downhole fiber. The method may comprise generating and launching a light pulse from an interrogator and through a first fiber optic cable to a downhole fiber and receiving a Brillouin backscattered light from a first sensing region and a second sensing region.
    Type: Application
    Filed: November 3, 2021
    Publication date: June 16, 2022
    Applicant: Halliburton Energy Services, Inc.
    Inventors: John Laureto Maida, JR., Daniel Joshua Stark, Glenn Andrew Wilson, Andreas Ellmauthaler, Michel Joseph LeBlanc, Mikko K. Jaaskelainen