Patents by Inventor Pawel Kasprzykowski

Pawel Kasprzykowski 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: 10656134
    Abstract: A computer system including a processor executing processor-executable code stored in a non-transitory processor-readable medium, causing the processor to receive a signal via an input port, including data indicative of an amount of a combustion product produced by a sample of drill cuttings subjected to oxidation at a constant temperature (1000° C. or 650° C. 100° C.) as a function of time and process the data according to a predetermined logic to: locate a peak in the amount of the combustion product produced at a set of instants in time; correlate the set of instants in time with the presence in the sample of an organic carbon from a contaminant or light volatile carbon molecules, organic carbon, and inorganic carbon; calculate at least one of an amount of contaminant, a total amount of organic carbon, and a total amount of inorganic carbon; and output a signal indicative of the calculated amount.
    Type: Grant
    Filed: December 2, 2014
    Date of Patent: May 19, 2020
    Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Reda Karoum, Karim Bondabou, Pawel Kasprzykowski, Jerome Breviere
  • Patent number: 10655464
    Abstract: The disclosure relates to a modular device for analyzing gas extracted from a drilling fluid used for drilling a wellbore, comprising a chassis having a power supply system, a fluid distribution and regulation system, and a control module, and a first and second analysis module of different types. The analysis modules comprise a detector for measuring a parameter relative to a content of a gas compound. The chassis comprises a core connector having power, communication and fluid outputs, the analysis modules having a module connector complementary to the core connector. The complementary core and module connectors form a removable connection, easy and quick to connect. The device obtains a measurement from the detector of the first analysis module when connected to the chassis via the core connector and a measurement from the detector of the second analysis module when connected to the chassis via the core connector.
    Type: Grant
    Filed: December 14, 2017
    Date of Patent: May 19, 2020
    Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Pawel Kasprzykowski, Martin Delacoux Des Roseaux
  • Publication number: 20180171786
    Abstract: The disclosure relates to a device for analyzing at least a flow of gas extracted from a drilling fluid used for drilling a wellbore, comprising a chassis having a power supply system, a fluid distribution and regulation system, and a control module, and a first and second analysis module of different types, each comprising at least a detector for measuring at least a parameter relative to a content of at least a gas compound in the flow of gas. The chassis comprises a core connector having power, communication and fluid outputs, each of the analysis modules having a module connector complementary to the core connector. The complementary core and module connectors are configured to form a removable connection.
    Type: Application
    Filed: December 14, 2017
    Publication date: June 21, 2018
    Inventors: Pawel Kasprzykowski, Martin Delacoux Des Roseaux
  • Publication number: 20170045491
    Abstract: A computer system including a processor executing processor-executable code stored in a non-transitory processor-readable medium, causing the processor to receive a signal via an input port, including data indicative of an amount of a combustion product produced by a sample of drill cuttings subjected to oxidation at a constant temperature (1000° C. or 650° C. 100° C.) as a function of time and process the data according to a predetermined logic to: locate a peak in the amount of the combustion product produced at a set of instants in time; correlate the set of instants in time with the presence in the sample of an organic carbon from a contaminant or light volatile carbon molecules, organic carbon, and inorganic carbon; calculate at least one of an amount of contaminant, a total amount of organic carbon, and a total amount of inorganic carbon; and output a signal indicative of the calculated amount.
    Type: Application
    Filed: December 2, 2014
    Publication date: February 16, 2017
    Inventors: Reda Karoum, Karim Bondabou, Pawel Kasprzykowski, Jerome Breviere
  • Patent number: 9234827
    Abstract: Method and apparatus for determining the relative content of a first rock species and of a second rock species in a rock sample extracted from a wellbore. The method comprises adding a reactant to the rock sample, measuring a first information (PT1) relative to a first amount of compound produced at a first instant (T1) and a second information (PT2) relative to a second amount of compound produced at a second instant (T2). The method also comprises calculating the relative content of the first species in the rock sample from the first information (PT1) and calculating the relative content of the second species in the rock sample from the second information PT2). The method comprises determining a corrected amount (Cv) of compound generated by the reaction of the second species with the reactant at the first instant (T1), and calculating the relative content of the first species in the rock sample and the relative content of the second species in the rock sample based on the corrected amount (Cv).
    Type: Grant
    Filed: December 14, 2012
    Date of Patent: January 12, 2016
    Assignee: GEOSERVICES EQUIPEMENTS
    Inventors: Farouk Kimour, Eric Villard, Pawel Kasprzykowski
  • Publication number: 20150087071
    Abstract: Method and apparatus for determining the relative content of a first rock species and of a second rock species in a rock sample extracted from a wellbore. The method comprises adding a reactant to the rock sample, measuring a first information (PT1) relative to a first amount of compound produced at a first instant (T1) and a second information (PT2) relative to a second amount of compound produced at a second instant (T2). The method also comprises calculating the relative content of the first species in the rock sample from the first information (PT1) and calculating the relative content of the second species in the rock sample from the second information PT2). The method comprises determining a corrected amount (Cv) of compound generated by the reaction of the second species with the reactant at the first instant (T1), and calculating the relative content of the first species in the rock sample and the relative content of the second species in the rock sample based on the corrected amount (Cv).
    Type: Application
    Filed: December 14, 2012
    Publication date: March 26, 2015
    Applicant: Geoservices Equipements
    Inventors: Farouk Kimour, Eric Villard, Pawel Kasprzykowski