Patents by Inventor Joel Brewer
Joel Brewer 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).
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Patent number: 11740375Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.Type: GrantFiled: April 4, 2022Date of Patent: August 29, 2023Assignee: SHEARWATER GEOSERVICES SOFTWARE INC.Inventors: Chengbo Li, Chuck Mosher, Leo Ji, Joel Brewer
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Publication number: 20220221608Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.Type: ApplicationFiled: April 4, 2022Publication date: July 14, 2022Inventors: Chengbo LI, Chuck MOSHER, Leo JI, Joel BREWER
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Patent number: 11294088Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.Type: GrantFiled: March 30, 2020Date of Patent: April 5, 2022Assignee: CONOCOPHILLIPS COMPANYInventors: Chengbo Li, Chuck Mosher, Leo Ji, Joel Brewer
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Publication number: 20200225377Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.Type: ApplicationFiled: March 30, 2020Publication date: July 16, 2020Inventors: Chengbo LI, Chuck MOSHER, Leo JI, Joel BREWER
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Patent number: 10605941Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.Type: GrantFiled: December 18, 2015Date of Patent: March 31, 2020Assignee: ConocoPhillips CompanyInventors: Chengbo Li, Chuck Mosher, Leo Ji, Joel Brewer
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Patent number: 10126450Abstract: A method for modeling and analyzing the impact of different seismic surveying and imaging techniques on a subterranean formation uses a black hole boundary condition around a particular region in the formation where at least one of the physical characteristics is unclear and may distort the seismic modeling results. The black hole boundary conditions will eliminate any energy wave that enters, exit or reflect off the region so as to avoid any image distortion caused by this region. The resulted image data is compared with the image data obtained without using the black hole boundary conditions to determine the impact of this region, and proper correction can be made to more precisely and accurately model the formation.Type: GrantFiled: February 17, 2016Date of Patent: November 13, 2018Assignee: CONOCOPHILLIPS COMPANYInventors: Peter M. Eick, Joel Brewer
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Patent number: 9817145Abstract: The invention relates to a downhole inertial mass seismic-source system, apparatus and method for use within a wellbore environment to provide seismic signal energy at a wellbore location. The system comprises a first inertial mass apparatus with a fluid plunger that is in contact with a first wellbore fluid chamber and a second wellbore fluid chamber, a second inertial mass apparatus with a fluid plunger in contact with the first well bore fluid chamber, a third inertial mass apparatus with a fluid plunger in contact with the second well bore fluid chamber, an Inertial Mass Control System (IMCS) connected to the first inertial mass apparatus, and a power source providing power to the Inertial Mass Control System.Type: GrantFiled: April 27, 2016Date of Patent: November 14, 2017Assignee: ConocoPhillips CompanyInventors: Peter Eick, Joel Brewer
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Patent number: 9726769Abstract: Imperfect separation at the higher frequencies has been observed and was eventually was tracked down to the poor GFE signal that is normally used in the inversion. The invention thus uses a “derived GFE” for each source, obtained by comparing the shot records and remove the differences, instead of the prior estimated GFE signal put out by the controller, thus accurately maximizing the separation of the data.Type: GrantFiled: March 25, 2015Date of Patent: August 8, 2017Assignee: CONOCOPHILLIPS COMPANYInventors: Peter M. Eick, Joel Brewer
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Publication number: 20170082761Abstract: A multi-stage inversion method for deblending seismic data includes: a) acquiring blended seismic data from a plurality of seismic sources; b) constructing an optimization model that includes the acquired blended seismic data and unblended seismic data; c) performing sparse inversion, via a computer processor, on the optimization model; d) estimating high-amplitude coherent energy from result of the performing sparse inversion in c); e) re-blending the estimated high-amplitude coherent energy; and f) computing blended data with an attenuated direct arrival energy.Type: ApplicationFiled: December 18, 2015Publication date: March 23, 2017Inventors: Chengbo LI, Chuck MOSHER, Leo JI, Joel BREWER
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Publication number: 20160320513Abstract: The invention relates to a downhole inertial mass seismic-source system, apparatus and method for use within a wellbore environment to provide seismic signal energy at a wellbore location. The system comprises a first inertial mass apparatus with a fluid plunger that is in contact with a first wellbore fluid chamber and a second wellbore fluid chamber, a second inertial mass apparatus with a fluid plunger in contact with the first well bore fluid chamber, a third inertial mass apparatus with a fluid plunger in contact with the second well bore fluid chamber, an Inertial Mass Control System (IMCS) connected to the first inertial mass apparatus, and a power source providing power to the Inertial Mass Control System.Type: ApplicationFiled: April 27, 2016Publication date: November 3, 2016Inventors: Peter EICK, Joel BREWER
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Publication number: 20160238728Abstract: The present disclosure provides a method for modeling and analyzing the impact of different seismic surveying and imaging techniques on a subterranean formation by creating a black hole boundary condition around a particular region in the formation where at least one of the physical characteristics is unclear and may distort the seismic modeling results. The black hole boundary conditions will eliminate any energy wave that enters, exit or reflect off the region so as to avoid any image distortion caused by this region.Type: ApplicationFiled: February 17, 2016Publication date: August 18, 2016Inventors: Peter M. EICK, Joel BREWER
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Publication number: 20150285928Abstract: Imperfect separation at the higher frequencies has been observed and was eventually was tracked down to the poor GFE signal that is normally used in the inversion. The invention thus uses a “derived GFE” for each source, obtained by comparing the shot records and remove the differences, instead of the prior estimated GFE signal put out by the controller, thus accurately maximizing the separation of the data.Type: ApplicationFiled: March 25, 2015Publication date: October 8, 2015Inventors: Peter M. EICK, Joel BREWER
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Patent number: 8762527Abstract: A system for conducting secure on-line transactions includes a user communication device, a third party server, and one or more merchant servers. The user communication device can communicate with one or more preapproved merchants from within a virtualized environment using a custom browser. The custom browser supports only a single connection at any given time and only if the connection is to one of the preapproved merchants. The merchant website includes a custom markup language that can be parsed by the custom browser to render web pages on the user communication device.Type: GrantFiled: March 1, 2011Date of Patent: June 24, 2014Assignee: Visa International Service AssociationInventor: Joel Brewer
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Publication number: 20110320310Abstract: A system for conducting secure on-line transactions includes a user communication device, a third party server, and one or more merchant servers. The user communication device can communicate with one or more preapproved merchants from within a virtualized environment using a custom browser. The custom browser supports only a single connection at any given time and only if the connection is to one of the preapproved merchants. The merchant website includes a custom markup language that can be parsed by the custom browser to render web pages on the user communication device.Type: ApplicationFiled: March 1, 2011Publication date: December 29, 2011Inventor: Joel Brewer