Patents by Inventor Mikko Jaaskelainen

Mikko 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).

  • Publication number: 20160153276
    Abstract: A multifunctional end cap assembly for use in terminating the toe end of subsurface coiled tubing strings that include multiple sensors. The assembly includes provisions for turnarounds for DTS or DAS systems as well as provisions for connecting formation pressures with a pressure transducer within the coiled tubing string.
    Type: Application
    Filed: August 14, 2013
    Publication date: June 2, 2016
    Applicant: Haliburton Energy Services, Inc.
    Inventors: Brian PARK, Mikko JAASKELAINEN
  • Patent number: 9302693
    Abstract: A coiled tubing servicing system comprising a servicing cart comprising two or more support frames, a length of coiled tubing supported by the servicing cart, a servicing fixture disposed about a portion of the length of coiled tubing adjacent the servicing cart, wherein the servicing fixture is movable along a longitudinal axis of the length of coiled tubing and radially about the longitudinal axis of the length of coiled tubing; and a servicing tool coupled to the servicing fixture.
    Type: Grant
    Filed: February 20, 2013
    Date of Patent: April 5, 2016
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Kenneth Glenn Dixson, Brian Vandellyn Park, Maximo Gustavo Michaelis, Mikko Jaaskelainen
  • Patent number: 9291789
    Abstract: An optical waveguide pumping method can include pumping a liquid fluid through a conduit, thereby pumping an optical waveguide into the conduit, and operating a fluid recovery device, so that fluid pressure in the conduit is less than a vapor pressure of the fluid and/or fluid temperature in the conduit is reduced from above a boiling point temperature of the fluid to below the boiling point temperature of the fluid. An optical waveguide pumping system can include a pump which pumps a liquid fluid into a conduit and thereby pumps an optical waveguide into the conduit, and a fluid recovery device connected to the conduit. The fluid recovery device reduces fluid pressure in the conduit to below a vapor pressure of the fluid and/or reduces fluid temperature in the conduit from above a boiling point temperature of the fluid to below the boiling point temperature of the fluid.
    Type: Grant
    Filed: December 17, 2013
    Date of Patent: March 22, 2016
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Maximo G. Michaelis, Glenn McColpin, Brian V. Park, Mikko Jaaskelainen
  • Publication number: 20160003648
    Abstract: Various embodiments include apparatus and methods to measure a parameter of interest using a fiber optic cable. The parameters can be provided by a process that provides for multiplexed or distributed measurements. A multiplexed or a distributed architecture can include acoustic sensor units placed selectively along an optical fiber such that the acoustic sensor units effectively modulate the optical fiber with information regarding a parameter to provide the information to an interrogator coupled to the optical fiber that is separate from the acoustic sensor units.
    Type: Application
    Filed: August 7, 2013
    Publication date: January 7, 2016
    Applicant: Haliburton Energy Services, Inc.
    Inventors: David Andrew Barfoot, Glenn MCCOLPIN, Mikko Jaaskelainen, John Maida
  • Publication number: 20150378124
    Abstract: An optical waveguide pumping method can include pumping a liquid fluid through a conduit, thereby pumping an optical waveguide into the conduit, and operating a fluid recovery device, so that fluid pressure in the conduit is less than a vapor pressure of the fluid and/or fluid temperature in the conduit is reduced from above a boiling point temperature of the fluid to below the boiling point temperature of the fluid. An optical waveguide pumping system can include a pump which pumps a liquid fluid into a conduit and thereby pumps an optical waveguide into the conduit, and a fluid recovery device connected to the conduit. The fluid recovery device reduces fluid pressure in the conduit to below a vapor pressure of the fluid and/or reduces fluid temperature in the conduit from above a boiling point temperature of the fluid to below the boiling point temperature of the fluid.
    Type: Application
    Filed: December 17, 2013
    Publication date: December 31, 2015
    Inventors: Maximo G. MICHAELIS, Glenn MCCOLPIN, Brian V. PARK, Mikko JAASKELAINEN
  • Publication number: 20150369954
    Abstract: A method of measuring an electromagnetic field in a formation can include installing an electromagnetic sensor with improved sensitivity, the sensor including multiple optical waveguides and respective multiple materials, and in response to exposure to the electromagnetic field, the materials changing shape in opposite directions. A well system can include an optical electromagnetic sensor which measures an electromagnetic field in a formation, and wherein optical path lengths or phases in optical waveguides of the sensor change both positively and negatively in response to exposure to the electromagnetic field.
    Type: Application
    Filed: August 31, 2015
    Publication date: December 24, 2015
    Applicant: Halliburton Energy Services, Inc.
    Inventors: Mikko Jaaskelainen, Tasneem A. Mandviwala
  • Patent number: 9188694
    Abstract: A method of measuring an electromagnetic field in a formation can include installing an electromagnetic sensor with improved sensitivity, the sensor including multiple optical waveguides and respective multiple materials, and in response to exposure to the electromagnetic field, the materials changing shape in opposite directions. A well system can include an optical electromagnetic sensor which measures an electromagnetic field in a formation, and wherein optical path lengths or phases in optical waveguides of the sensor change both positively and negatively in response to exposure to the electromagnetic field.
    Type: Grant
    Filed: November 16, 2012
    Date of Patent: November 17, 2015
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Mikko Jaaskelainen, Tasneem A. Mandviwala
  • Publication number: 20150323700
    Abstract: A method for re-calibrating installed downhole sensors used in hydrocarbon wells by the application of a calibration string inserted in the wells and deployed in close proximity to the installed downhole sensor.
    Type: Application
    Filed: July 17, 2015
    Publication date: November 12, 2015
    Inventor: Mikko Jaaskelainen
  • Publication number: 20150308259
    Abstract: A method of monitoring deformation and other characteristics of a casing or other tubular or cylindrical well equipment in a well traversing an underground formation. The method includes providing a carrier rod having at least one recess extending along at least part of the length of the rod, in which recess an optical fiber assembly for monitoring strain, temperature and/or other physical parameters is arranged, which assembly is along at least part of the assembly's length bonded within the recess; lowering the carrier rod and well equipment simultaneously into the well such that the rod is arranged in an annular space between the well equipment and the wellbore; securing the rod at a plurality of locations distributed along the rod's length to the well equipment; and connecting the optical fiber assembly to an optical signal transmission and reception assembly for monitoring physical parameters of the well equipment.
    Type: Application
    Filed: May 20, 2015
    Publication date: October 29, 2015
    Inventor: Kari-Mikko JÄÄSKELÄINEN
  • Patent number: 9121261
    Abstract: A multiple integral pressure transducer system for installation in oil field downhole coiled tubing systems.
    Type: Grant
    Filed: February 20, 2013
    Date of Patent: September 1, 2015
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Glenn Robert McColpin, Brian Park, Kenneth Glenn Dixson, Mikko Jaaskelainen, Maximo Gustavo Michaelis
  • Patent number: 9121972
    Abstract: A method for re-calibrating installed downhole sensors used in hydrocarbon wells by the application of a calibration string inserted in the wells and deployed in close proximity to the installed downhole sensor.
    Type: Grant
    Filed: January 26, 2013
    Date of Patent: September 1, 2015
    Assignee: Halliburton Energy Services, Inc.
    Inventor: Mikko Jaaskelainen
  • Patent number: 9122033
    Abstract: A tubular seismic sensing cable for use in wells and a method of deployment into wells to provide higher seismic sensitivity.
    Type: Grant
    Filed: October 15, 2012
    Date of Patent: September 1, 2015
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Mikko Jaaskelainen, Etienne Samson
  • Patent number: 9091834
    Abstract: A method and device for relieving thermal stresses on the optical fibers in fiber optic splice housings used in hostile thermal environments.
    Type: Grant
    Filed: February 1, 2013
    Date of Patent: July 28, 2015
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Mikko Jaaskelainen, Ian Bradford Mitchell, Brian Vandelyn Park, Jason Edward Therrien
  • Patent number: 9074988
    Abstract: A system and method for controlling hydrogen concentration in optical sensing systems in subsurface wells. In an exemplary system the downhole optical fiber sensors are positioned within nested conduits and a controlled concentration hydrogen gas is flowed in a first direction through the first conduit, and flowed in a second direction through the annulus, wherein the second direction is opposite to the first direction.
    Type: Grant
    Filed: June 5, 2013
    Date of Patent: July 7, 2015
    Assignee: Halliburton Energy Services, Inc
    Inventor: Mikko Jaaskelainen
  • Patent number: 9027639
    Abstract: Disclosed are sand control screens and completion assemblies that receive, retain, and protect control lines during installation and operation thereof. One disclosed completion assembly includes a base pipe, at least one screen jacket positioned around the base pipe and operable to prevent an influx of particulate matter of a predetermined size therethrough, a control line housing arranged uphole from the at least one screen jacket and having a fiber optic splicing block disposed therein, the at least one fiber optic splicing block being communicably coupled to a control line that extends uphole from the control line housing, and one or more hydraulic conduits arranged longitudinally between the at least one screen jacket and the base pipe and extending from the control line housing.
    Type: Grant
    Filed: July 8, 2013
    Date of Patent: May 12, 2015
    Assignee: Halliburton Energy Services, Inc.
    Inventors: Mikko Jaaskelainen, Stephen Michael Greci
  • Publication number: 20150123476
    Abstract: An apparatus for collecting energy in connection with a sheave system in a hoisting apparatus provided with a sheave system. The apparatus includes at least one generator including a rotor and at least one stator. The rotor is connected rigidly to a sheave of the sheave system, and the at least one stator is connected rigidly to the sheave system such that when the load of the hoisting apparatus is rising or lowering, said at least one sheave rotates, whereby the rotor rotates simultaneously but the stator does not rotate, whereby electric energy is induced in the stator. The apparatus further includes electric energy storage, a device for modifying induced electric energy and storing it in energy storage; and a device for supplying energy from the energy storage to at least one consumption device. The consumption device may be, for example, a working lamp, sensor, measuring device, communications device, signal device, charging plug or a combination of these mounted in connection with the sheave system.
    Type: Application
    Filed: April 23, 2013
    Publication date: May 7, 2015
    Applicant: KONECRANES PLC
    Inventors: Heikki Mesiä, Lasse Eriksson, Hannu Lindfors, Kim Schlesier, Timo Vuorela, Mika Inkinen, Manu Myry, Pekka Ruuskanen, Mikko Jääskeläinen, Martti Paju
  • Publication number: 20150116124
    Abstract: An illustrative distributed sensing system includes a fiberoptic cable, a transmitter module, and a receiver module. The transmitter module is coupled to the fiberoptic cable to communicate light in each of multiple independent paths to each of multiple positions along the cable, The receiver module is coupled to the fiberoptic cable to receive backscattered light from said multiple positions along the cable via the multiple independent paths. The receiver module includes at least one receiver for each of said multiple independent paths to obtain simultaneous measurements for each of said multiple positions. The multiple independent paths may be provided by wave division multiplexing, frequency division multiplexing, spatial mode division multiplexing, multicore fiber, and/or multiple fibers.
    Type: Application
    Filed: October 29, 2013
    Publication date: April 30, 2015
    Inventors: Kari-Mikko JAASKELAINEN, Henry C. BLAND, Benjamin M. BANACK, David A. BARFOOT
  • Patent number: 9002152
    Abstract: A DTS system resistant to radiation induced attenuation losses during the service life of an installation at both low and high temperatures using matched multi-wavelength distributed temperature sensing automatic calibration technology in combination with designed Pure Silica Core (PSC) optical fibers and an in process photo bleaching method provided by the light sources of the distributed temperature sensing system.
    Type: Grant
    Filed: April 30, 2011
    Date of Patent: April 7, 2015
    Assignee: SensorTran, Inc.
    Inventor: Mikko Jaaskelainen
  • Publication number: 20150013970
    Abstract: Disclosed are sand control screens and completion assemblies that receive, retain, and protect control lines during installation and operation thereof. One disclosed completion assembly includes a base pipe, at least one screen jacket positioned around the base pipe and operable to prevent an influx of particulate matter of a predetermined size therethrough, a control line housing arranged uphole from the at least one screen jacket and having a fiber optic splicing block disposed therein, the at least one fiber optic splicing block being communicably coupled to a control line that extends uphole from the control line housing, and one or more hydraulic conduits arranged longitudinally between the at least one screen jacket and the base pipe and extending from the control line housing.
    Type: Application
    Filed: July 8, 2013
    Publication date: January 15, 2015
    Applicant: Halliburton Energy Services, Inc.
    Inventors: Mikko Jaaskelainen, Stephen Michael Greci
  • Publication number: 20140362431
    Abstract: Generating broadband light downhole for wellbore application. A laser source is configured to reside outside a wellbore and produce a seed light pulse at a first wavelength spectrum. A converter is configured to be received inside the wellbore, remote from the laser source. The converter receives the seed light pulse at the first wavelength spectrum through one or more fiber optic cables, and generates light at a second wavelength spectrum that has a broader range than the first wavelength spectrum.
    Type: Application
    Filed: June 11, 2013
    Publication date: December 11, 2014
    Inventors: Ian Bradford Mitchell, Mikko Jaaskelainen