Patents by Inventor Sam T. KAPLAN

Sam T. KAPLAN 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: 11808907
    Abstract: A method for 2D seismic data acquisition includes determining source-point seismic survey positions for a combined deep profile seismic data acquisition with a shallow profile seismic data acquisition wherein the source-point positions are based on non-uniform optimal sampling. A seismic data set is acquired with a first set of air-guns optimized for a deep-data seismic profile and the data set is acquired with a second set of air-guns optimized for a shallow-data seismic profile. The data are de-blended to obtain a deep 2D seismic dataset and a shallow 2D seismic dataset.
    Type: Grant
    Filed: June 14, 2021
    Date of Patent: November 7, 2023
    Assignee: SHEARWATER GEOSERVICES SOFTWARE INC.
    Inventors: Chengbo Li, Charles C. Mosher, Robert G. Keys, Peter M. Eick, Sam T. Kaplan, Joel D. Brewer
  • Publication number: 20230099919
    Abstract: A method is described for generating a subsurface model using stochastic full waveform inversion by receiving a seismic dataset representative of a subsurface volume of interest; performing stochastic full waveform inversion of the seismic dataset to generate a long wavelength subsurface model; and performing full waveform inversion of the seismic dataset using the long wavelength subsurface model as a starting model to generate an improved subsurface model. The method may further include performing seismic imaging of the seismic dataset using the improved subsurface model to generate a seismic image and identifying geologic features based on the seismic image. The method may be executed by a computer system.
    Type: Application
    Filed: March 15, 2021
    Publication date: March 30, 2023
    Inventors: Jinsong Chen, Uwe K. Albertin, Kurt T. Nihei, Sam T. Kaplan, Gary Michael Hoversten, Lin Zhang, Dimitri Bevc
  • Publication number: 20210311219
    Abstract: A method for 2D seismic data acquisition includes determining source-point seismic survey positions for a combined deep profile seismic data acquisition with a shallow profile seismic data acquisition wherein the source-point positions are based on non-uniform optimal sampling. A seismic data set is acquired with a first set of air-guns optimized for a deep-data seismic profile and the data set is acquired with a second set of air-guns optimized for a shallow-data seismic profile. The data are de-blended to obtain a deep 2D seismic dataset and a shallow 2D seismic dataset.
    Type: Application
    Filed: June 14, 2021
    Publication date: October 7, 2021
    Inventors: Chengbo LI, Charles C. MOSHER, Robert G. KEYS, Peter M. EICK, Sam T. KAPLAN, Joel D. BREWER
  • Patent number: 11035968
    Abstract: A method for 2D seismic data acquisition includes determining source-point seismic survey positions for a combined deep profile seismic data acquisition with a shallow profile seismic data acquisition wherein the source-point positions are based on non-uniform optimal sampling. A seismic data set is acquired with a first set of air-guns optimized for a deep-data seismic profile and the data set is acquired with a second set of air-guns optimized for a shallow-data seismic profile. The data are de-blended to obtain a deep 2D seismic dataset and a shallow 2D seismic dataset.
    Type: Grant
    Filed: November 2, 2017
    Date of Patent: June 15, 2021
    Assignee: CONOCOPHILLIPS COMPANY
    Inventors: Chengbo Li, Charles C. Mosher, Robert G. Keys, Peter M. Eick, Sam T. Kaplan, Joel D. Brewer
  • Publication number: 20200158902
    Abstract: A method for 2D seismic data acquisition includes determining source-point seismic survey positions for a combined deep profile seismic data acquisition with a shallow profile seismic data acquisition wherein the source-point positions are based on non-uniform optimal sampling. A seismic data set is acquired with a first set of air-guns optimized for a deep-data seismic profile and the data set is acquired with a second set of air-guns optimized for a shallow-data seismic profile. The data are de-blended to obtain a deep 2D seismic dataset and a shallow 2D seismic dataset.
    Type: Application
    Filed: November 2, 2017
    Publication date: May 21, 2020
    Inventors: Chengbo LI, Charles C. MOSHER, Robert G. KEYS, Peter M. EICK, Sam T. KAPLAN, Joel D. BREWER
  • Publication number: 20190129050
    Abstract: A method for 2D seismic data acquisition includes determining source-point seismic survey positions for a combined deep profile seismic data acquisition with a shallow profile seismic data acquisition wherein the source-point positions are based on non-uniform optimal sampling. A seismic data set is acquired with a first set of air-guns optimized for a deep-data seismic profile and the data set is acquired with a second set of air-guns optimized for a shallow-data seismic profile. The data are de-blended to obtain a deep 2D seismic dataset and a shallow 2D seismic dataset.
    Type: Application
    Filed: November 2, 2017
    Publication date: May 2, 2019
    Inventors: Chengbo LI, Charles C. MOSHER, Robert G. KEYS, Peter M. EICK, Sam T. KAPLAN, Joel D. BREWER
  • Publication number: 20190011583
    Abstract: A method is described for full waveform inversion using a tree-based Bayesian approach which automatically selects the model complexity, thereby reducing the computational cost. The method may be executed by a computer system.
    Type: Application
    Filed: July 5, 2018
    Publication date: January 10, 2019
    Inventors: Anandaroop Ray, Sam T. Kaplan, John Kenneth Washbourne, Uwe K. Albertin
  • Patent number: 9632193
    Abstract: Computer-implemented method for determining optimal sampling grid during seismic data reconstruction includes: a) constructing an optimization model, via a computing processor, given by minu?Su?1s.t. ?Ru?b?2?? wherein S is a discrete transform matrix, b is seismic data on an observed grid, u is seismic data on a reconstruction grid, and matrix R is a sampling operator; b) defining mutual coherence as ? ? C S ? m ( log ? ? n ) 6 , wherein C is a constant, S is a cardinality of Su, m is proportional to number of seismic traces on the observed grid, and n is proportional to number of seismic traces on the reconstruction grid; c) deriving a mutual coherence proxy, wherein the mutual coherence proxy is a proxy for mutual coherence when S is over-complete and wherein the mutual coherence proxy is exactly the mutual coherence when S is a Fourier transform; and d) determining a sample grid r*=arg minr ?(r).
    Type: Grant
    Filed: October 31, 2014
    Date of Patent: April 25, 2017
    Assignee: ConocoPhillips Company
    Inventors: Chengbo Li, Sam T. Kaplan, Charles C. Mosher, Joel D. Brewer, Robert G. Keys
  • Publication number: 20150124560
    Abstract: Computer-implemented method for determining optimal sampling grid during seismic data reconstruction includes: a) constructing an optimization model, via a computing processor, given by minu?Su?1 s.t. ?Ru?b?2?? wherein S is a discrete transform matrix, b is seismic data on an observed grid, u is seismic data on a reconstruction grid, and matrix R is a sampling operator; b) defining mutual coherence as ? ? C S ? m ( log ? ? n ) 6 , wherein C is a constant, S is a cardinality of Su, m is proportional to number of seismic traces on the observed grid, and n is proportional to number of seismic traces on the reconstruction grid; c) deriving a mutual coherence proxy, wherein the mutual coherence proxy is a proxy for mutual coherence when S is over-complete and wherein the mutual coherence proxy is exactly the mutual coherence when S is a Fourier transform; and d) determining a sample grid r*=arg minr ?(r).
    Type: Application
    Filed: October 31, 2014
    Publication date: May 7, 2015
    Inventors: Chengbo LI, Sam T. KAPLAN, Charles C. MOSHER, Joel D. BREWER, Robert G. KEYS