Patents Assigned to ExxonMobil Upstream Research Company
  • Patent number: 8892413
    Abstract: Method for speeding up iterative inversion of seismic data (106) to obtain a subsurface model (102), using local cost function optimization. The frequency spectrum of the updated model at each iteration is controlled to match a known or estimated frequency spectrum for the subsurface region, preferably the average amplitude spectrum of the subsurface P-impedance. The controlling is done either by applying a spectral-shaping filter to the source wavelet (303) and to the data (302) or by applying the filter, which may vary with time, to the gradient of the cost function (403). The source wavelet's amplitude spectrum (before filtering) should satisfy D(f)=fIp(f)W(f), where f is frequency, D(f) is the average amplitude spectrum of the seismic data, and Ip(f) is the average amplitude spectrum for P-impedance in the subsurface region (306,402) or an approximation thereof.
    Type: Grant
    Filed: January 30, 2012
    Date of Patent: November 18, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Partha S. Routh, Spyridon K. Lazaratos, Anatoly Baumstein, Ivan Chikichev, Ke Wang
  • Patent number: 8892407
    Abstract: A robust well trajectory planning and drilling or completion planning system that integrates well trajectory optimization and well development planning optimization so that optimized solutions are generated simultaneously. The optimization model can consider unknown parameters having uncertainties directly within the optimization model. The model can systematically address uncertain data and well trajectory, for example, comprehensively or even taking all uncertain data into account. Accordingly, the optimization model can provide flexible optimization solutions that remain feasible over an uncertainty space. Once the well trajectory and drilling or completion plan are optimized, final development plans may be generated. Additionally, the optimization model may generate and implement modified well development planning and modified well trajectory in real-time.
    Type: Grant
    Filed: July 2, 2009
    Date of Patent: November 18, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Benny S. Budiman, Amr S. El-Bakry, Hubert Lane Morehead
  • Patent number: 8884964
    Abstract: A method of creating a visual display based on a plurality of data sources is provided. An exemplary embodiment of the method comprises extracting a set of extracted data from the plurality of data sources and processing at least a portion of the extracted data with a set of knowledge agents according to specific criteria to create at least one data assemblage. The exemplary method also comprises providing an integrated two-dimensional/three-dimensional (2D/3D) visual display in which at least one 2D element of the at least one data assemblage is integrated into a 3D visual representation using a mapping identifier and a criteria identifier.
    Type: Grant
    Filed: March 9, 2009
    Date of Patent: November 11, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: James E. Holl, Yao-Chou Cheng, Mark W. Dobin, John F. Schuette, Chul-Sung Kim, Eric A. Schmidtke
  • Patent number: 8875789
    Abstract: An in situ method of producing hydrocarbon fluids from an organic-rich rock formation may include heating an organic-rich rock formation, for example an oil shale formation, in situ to pyrolyze formation hydrocarbons, for example kerogen, to form a production fluid containing hydrocarbon fluids. The method may include separating the production fluid into at least a gas stream and a liquid stream, where the gas stream is a low BTU gas stream. The low BTU gas stream is then fed to a gas turbine where it is combusted and is used to generate electricity.
    Type: Grant
    Filed: August 8, 2011
    Date of Patent: November 4, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Robert D. Kaminsky, Michele M. Thomas, Lauren Blanton, Eric D. Nelson, William A. Symington
  • Patent number: 8880384
    Abstract: Method for reducing artifacts in a subsurface physical properties model (120) inferred by iterative inversion (140) of geophysical data (130), wherein the artifacts are associated with some approximation (110) made during the iterative inversion. In the method, some aspect of the approximation is changed (160) as the inversion is iterated such that the artifacts do not increase by coherent addition.
    Type: Grant
    Filed: February 27, 2014
    Date of Patent: November 4, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Jerome R. Krebs, Sunwoong Lee, Young Ho Cha
  • Patent number: 8865100
    Abstract: The present application is directed to a method and system for monetizing energy. More specifically, the invention is directed to the economically efficient utilization of remote or stranded natural gas resources. The invention includes importing a high energy density material into an energy market and distributing the high energy density material (HEDM) therein. The HEDM is produced from reduction of a material oxide such as boria into the HEDM, which may be boron. The reduction utilizes remote hydrocarbon resources such as stranded natural gas resources.
    Type: Grant
    Filed: April 9, 2009
    Date of Patent: October 21, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Bruce T. Kelley, Harry W. Deckman, Stephen Mark Davis, Frank Hershkowitz
  • Patent number: 8863839
    Abstract: Method for producing hydrocarbon fluids from an organic-rich rock formation include providing a plurality of in situ heat sources configured to generate heat within the formation so as to pyrolyze solid hydrocarbons into hydrocarbon fluids. Preferably, the organic-rich rock formation is heated to a temperature of at least 270° C. Heating of the organic-rich rock formation continues so that heat moves away from the respective heat sources and through the formation at a first value of effective thermal diffusivity, ?1. Heating of the formation further continues in situ so that thermal fractures are caused to be formed in the formation or so that the permeability of the formation is otherwise increased. The method also includes injecting a fluid into the organic-rich rock formation. The purpose for injecting the fluid is to increase the value of thermal diffusivity within the subsurface formation to a second value, ?2.
    Type: Grant
    Filed: November 15, 2010
    Date of Patent: October 21, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Robert D. Kaminsky, Matthew T. Shanley
  • Patent number: 8855987
    Abstract: A method of improving a geologic model of a subsurface region. One or more sets of parameter values are selected. Each parameter represents a geologic property. A cost and a gradient of the cost are obtained for each set. A geometric approximation of a parameter space defined by one or more formations is constructed. A response surface model is generated expressing the cost and gradient associated with each formation. When a finishing condition is not satisfied, at least one additional set is selected based at least in part on the response surface model associated with previously selected sets. Parts of the method are repeated using successively selected additional sets to update the approximation and the response surface model until the finishing condition is satisfied. Sets having a predetermined level of cost to a geologic model of the subsurface region and/or their associated predicted outcomes are outputted to update the geologic model.
    Type: Grant
    Filed: July 27, 2010
    Date of Patent: October 7, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Matthias Imhof, Kaveh Ghayour, Tao Sun
  • Patent number: 8849623
    Abstract: Systems and methods which implement surrogate (e.g., approximation) models to systematically reduce the parameter space in an optimization problem are shown. In certain embodiments, rigorous (e.g., higher fidelity) models are implemented with respect to the reduced parameter space provided by use of surrogate models to efficiently and more rapidly arrive at an optimized solution. Accordingly, certain embodiments build surrogate models of an actual simulation, and systematically reduce the number of design parameters used in the actual simulation to solve optimization problems using the actual simulation. A multi-stage method that facilitates optimization of decisions related to development planning and reservoir management may be provided. Iterative processing may be implemented with respect to a multi-stage optimization method. There may be uncertainty in various parameters, such as in reservoir parameters, which is taken into account according to certain embodiments.
    Type: Grant
    Filed: September 14, 2009
    Date of Patent: September 30, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Federico D. Carvallo, Cassandra M. McZeal, Anoop A. Mullur, Vikas Goel
  • Patent number: 8849640
    Abstract: A method of planning a drilling operation IS provided that comprises selecting a set of targeted regions based on data from a three-dimensional shared earth model and generating at least one targeted segment within each one of the set of targeted regions The method further comprises defining at least one application agent for the purpose of evaluating the at least one targeted segment within each one of the set of targeted regions based on a potential payout in terms of production of hydrocarbons The exemplary method additionally comprises identifying at least one well trajectory through the at least one targeted segment within each one of the set of targeted regions And the method comprises employing the at least one application agent to evaluate well trajectories based on the potential payout in terms of at least one of production of hydrocarbons, drilling complexity, cost or stability of well planning.
    Type: Grant
    Filed: August 31, 2009
    Date of Patent: September 30, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: James E. Holl, Yao-Chou Cheng, Marek Czernuszenko, Rune Musum, Jose Sequeira, Hendrik Braaksma
  • Patent number: 8839861
    Abstract: Systems and methods for providing zonal isolation in a hydrocarbon well include or utilize a tubular assembly having an upstream manifold, a gravel packing conduit, a transport conduit, a leak-off conduit, and a downstream flow path. The tubular assembly is adapted to receive a gravel-laden slurry and to direct at least a portion of the same to the gravel packing conduit. The gravel-laden slurry exiting the gravel packing conduit packs the annulus between the tubular assembly and the wellbore by dehydrating at least in part through the leak-off conduit. The leak-off conduit is further gravel-packed by the gravel-laden slurry received by the tubular assembly. The leak-off conduit is dehydrated through a flow control valve. Together, the gravel packed annulus and the gravel packed leak-off conduit provide a gravel-based zonal isolation system.
    Type: Grant
    Filed: March 12, 2010
    Date of Patent: September 23, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Charles S. Yeh, Michael D. Barry, Michael T. Hecker, David C. Haeberle
  • Publication number: 20140278115
    Abstract: A workflow is presented that facilitates defining geocontextual information as a set of rules for multiple seismic attributes. Modeling algorithms may be employed that facilitate analysis of multiple seismic attributes to find candidate regions that are most likely to satisfy the set of rules. These candidates may then be sorted based on how well they represent the geocontextual information.
    Type: Application
    Filed: December 31, 2013
    Publication date: September 18, 2014
    Applicants: EXXONMOBIL UPSTREAM RESEARCH COMPANY, GENERAL ELECTRIC COMPANY
    Inventors: Erhan Bas, Gianni Matteucci, Ali Can, Jens Rittscher, Weina Ge, Kelly E. Wrobel, Matthias G. Imhof, Leslie A. Wahrmund, Antonio Rafael da Costa Paiva
  • Patent number: 8833509
    Abstract: Method for marine seismic acquisition using both monopole (91) and dipole (92) source types. Through a combination of source design and operation and/or combination or summing of the data in a processing step, the source ghost is either attenuated or, if desired, enhanced (93). The properties of the two different source types allow them to be adjusted so that the first down going wave from each has either opposite polarity or the same polarity, whereas the source-ghost wave will have, respectively same polarity or opposite polarity. This allows cancellation or enhancement of the source ghost. If the survey also employs two-component sensor acquisition, then the combined data sets may be both sensor de-ghosted and source de-ghosted.
    Type: Grant
    Filed: March 9, 2012
    Date of Patent: September 16, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Mark A. Meier, Richard E. Duren
  • Patent number: 8833467
    Abstract: The present invention discloses apparatuses, systems, and methods for operating a gas well. Some embodiments include a plunger apparatus configured to fall through a continuous water phase (including water slugs) in a gas producing well by overcoming pressure and drag forces from the water by having a sufficient mass, hydrodynamic profile, and sufficiently large area for passage of the continuous water. In one embodiment, a plunger body and plug mechanism are provided, wherein the plug mechanism has open and closed positions, which may be automatically changed or controlled by a surface or other control system, and wherein the plunger body and plug may be a physically integrated one-piece system, or an interoperable two piece system.
    Type: Grant
    Filed: May 20, 2010
    Date of Patent: September 16, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Ming Gong, Larry E. Harrison, Theodore W. Pirog, Robert D. Kaminsky, Pietro Valsecchi, Jeffrey R. Bailey, Swarupa S. Bangaru
  • Patent number: 8838428
    Abstract: Methods for identifying hydrocarbon plays include applying predictive models to sediment fill volume(s) to provide play-element volume(s) representing at least one play element. Each play-element volume represents at least 1) qualities of the at least one play element and 2) a probability that the at least one play element satisfies determined criteria for each of a plurality of locations within a basin. The methods further include analyzing the play-element volume(s) to define play-concept volume(s) representing hydrocarbon play(s). Each of a plurality of locations within the play-concept volume(s) is attributed with: 1) an identification of each play element associated with the location, 2) the qualities of each play element, 3) the probability for each play element that it satisfies determined criteria, and 4) a composite likelihood that the location represents a hydrocarbon play. At least one of the volumes may be used to identify hydrocarbon play(s).
    Type: Grant
    Filed: October 23, 2009
    Date of Patent: September 16, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Christopher Tapscott, Steven R. Schreuder, Ronald J. Kleist, Richard Thomas Mifflin, Can Ardic, Pierre Kedzierski, Kinesh K. Patel
  • Patent number: 8825461
    Abstract: A method of generating a model of a turbidity current in a fluid is disclosed. A first flow layer in the turbidity current is defined. The method successively defines at least one more flow layer in the turbidity current. Each successive flow layer includes the previously defined flow layer. A set of depth-averaged flow variables for each flow layer is defined. A model is developed that describes the turbidity current. The model uses fluid flow equations and the set of depth-averaged flow variables for each flow layer to predict fluid flow in each flow layer. The model is then output.
    Type: Grant
    Filed: November 16, 2009
    Date of Patent: September 2, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Tao Sun, Dachang Li, John Van Wagoner, Xiaohui Wu
  • Patent number: 8822387
    Abstract: A waxy oil-external emulsion is provided for injection into a selected zone of a subsurface formation. The selected zone is typically a high permeability zone. The emulsion generally comprises oil, added wax, and water. The emulsion may also include an emulsifying agent and a solvent. The emulsion is formulated to be a liquid at a temperature greater than a targeted temperature in the subsurface formation, but a solid at the targeted temperature. The targeted temperature is typically the maximum operating temperature for the formation. A method of formulating the emulsion is also provided. Further, a method of plugging a high permeability zone using the emulsion is disclosed.
    Type: Grant
    Filed: February 21, 2012
    Date of Patent: September 2, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: James R. Bragg, Joseph P. Lederhos, Sergio A. Leonardi, Scott E. Hommema, Amy L. Chen, Shan H. Yang
  • Patent number: 8820075
    Abstract: Methods and systems are provided for extracting ge?thermal heat from neighboring or proximate/ones in a fractured rock formation. The extraction of heat may be performed by cycling between injection and production using separate wells for each zone and offsetting the injection-production cycles between neighboring zones, for example, by keeping the injection-production cycle;* for neighboring zones out of phase with each other. The techniques provide for improved heal recover}’ from rock volumes while decreasing the size of buffer/ones between neighboring/ones, her example, in exemplary embodiments of the present techniques, proximate zones may be within 1000 meters, or even less, of each other. Accordingly, the zones do not have to be totally isolated from each other. The methods and systems described herein may help to impede cross-flow between the zones while minimizing waste heat (and well separation) from unutilized rock layers left between wells.
    Type: Grant
    Filed: August 27, 2010
    Date of Patent: September 2, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventor: Robert D. Kaminsky
  • Patent number: 8818780
    Abstract: A method of forming a geologic model of a subsurface region is disclosed. Data related to the subsurface region is obtained. A framework is constructed to represent the subsurface region. A template is selected from a plurality of templates. The selected template provides at least one property that is characteristic of the subsurface region. The selected template is inserted into the framework, to form the geologic model. The geologic model is then outputted.
    Type: Grant
    Filed: October 1, 2009
    Date of Patent: August 26, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Craig S. Calvert, Gregory S. Benson, Xiao-Hui Wu, Dachang Li, Deborah F. Kosich, Lawrence P. Walker
  • Patent number: 8812282
    Abstract: A method for efficient inversion of measured geophysical data from a subsurface region to prospect for hydrocarbons. Gathers of measured data (40) are encoded (60) using a set of non-equivalent encoding functions (30). Then all data records in each encoded gather that correspond to a single receiver are summed (60), repeating for each receiver to generate a simultaneous encoded gather (80). The method employs iterative, local optimization of a cost function to invert the encoded gathers of simultaneous source data. An adjoint method is used to calculate the gradients of the cost function needed for the local optimization process (100). The inverted data yields a physical properties model (110) of the subsurface region that, after iterative updating, can indicate presence of accumulations of hydrocarbons.
    Type: Grant
    Filed: January 26, 2009
    Date of Patent: August 19, 2014
    Assignee: ExxonMobil Upstream Research Company
    Inventors: Jerome R. Krebs, David L. Hinkley