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Method for simulating the filling of a sedimentary basin 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01V-001/00
출원번호 US-0788182 (1997-01-24)
우선권정보 FR-0001461 (1996-01-26)
발명자 / 주소
  • Joseph Philippe,FRX
  • Granjeon Didier,FRX
출원인 / 주소
  • Institut Francais du Petrole, FRX
대리인 / 주소
    Antonelli, Terry, Stout & Kraus, LLP
인용정보 피인용 횟수 : 70  인용 특허 : 0

초록

The invention relates to the creation of a numerical deterministic model of the diffusive type allowing 2D or 3D simulation of the filling of sedimentary basins by siliciclastic and carbonate sediments. A read only memory known data relative to the architecture of a basin and measuring data, well lo

대표청구항

[ We claim:] [1.] A method for constructing a deterministic model of a diffusive type for simulating a multilithologic filling of a sedimentary basin comprising:obtaining field data from the sedimentary basin relating to architecture of the basin, obtaining data from measurements of well logging dat

이 특허를 인용한 특허 (70)

  1. Ghayour, Kaveh; Sun, Tao, Adjoint-based conditioning of process-based geologic models.
  2. Kaminsky, Robert D.; Symington, William A.; Yeakel, Jesse D.; Thomas, Michele M.; Krohn, Steve R., Combined development of oil shale by in situ heating with a deeper hydrocarbon resource.
  3. Stone, Matthew T.; Ghurye, Ganesh; Shanley, Matthew T; Rasmussen, Peter; Huang, Xianghui; Kaminsky, Robert D., Converting organic matter from a subterranean formation into producible hydrocarbons by controlling production operations based on availability of one or more production resources.
  4. Mallet, Jean-Laurent; Tertois, Anne-Laure, Device, system and method for geological-time refinement.
  5. Kaminsky, Robert D.; Rasmussen, Chad C., Downhole burner wells for in situ conversion of organic-rich rock formations.
  6. Kaminsky, Robert D.; Rasmussen, Chad C., Downhole burners for in situ conversion of organic-rich rock formations.
  7. Kaminsky, Robert D.; Shanley, Matthew T., Enhanced convection for in situ pyrolysis of organic-rich rock formations.
  8. Dorn, Geoffrey A.; Hammon, III, William S.; Carlson, James A., Extraction of depositional systems.
  9. Ghayour, Kaveh; Bi, Linfeng; Wu, Xiaohui, Fault removal in geological models.
  10. Lu, Pengbo; Beckner, Bret L., Flexible and adaptive formulations for complex reservoir simulations.
  11. Calvert, Craig S.; Benson, Gregory S.; Wu, Xiao-Hui; Li, Dachang; Kosich, Deborah F.; Walker, Lawrence P., Forming a model of a subsurface region.
  12. Sun, Tao; Ghayour, Kaveh; Imhof, Matthias, Gradient-based workflows for conditioning of process-based geologic models.
  13. Kaminsky, Robert D., Granular electrical connections for in situ formation heating.
  14. Kaminsky, Robert D.; Symington, William A.; Yeakel, Jesse D.; Thomas, Michele M., In situ co-development of oil shale with mineral recovery.
  15. Huang, Hao; Wu, Xiaohui; Branets, Larisa V.; Chang, Dar-Lon; Ma, Xiang; Becker, Gauthier D.; Halsey, Thomas C., Managing discontinuities in geologic models.
  16. Mishev, Ilya D.; Dubois, Olivier; Jiang, Lijian, Method and system for finite volume simulation of flow.
  17. Usadi, Adam; Li, Dachang; Parashkevov, Rossen; Wu, Xiaohui; Yang, Yahan, Method and system for reservoir modeling.
  18. Lazaar Saiida,BEX ; Guerillot Dominique,FRX, Method for automatically forming a model simulating the stratigraphic structure of an underground zone.
  19. Deffenbaugh,Max; Dunn,Paul A., Method for constructing a geologic model of a subsurface reservoir.
  20. Sun, Tao; Li, Dachang; Deffenbaugh, Max; Huh, Chun; Hoyal, David C; Adair, Neal; Wu, Xiao-Hui; Chartrand, Timothy A.; Van Wagoner, John C, Method for evaluating sedimentary basin properties by numerical modeling of sedimentation processes.
  21. Ricard,Ludovic; Le Ravalec Dupin,Micka챘le, Method for generating a reservoir model on flexible grid.
  22. Li, Dachang; Sun, Tao; Huh, Chun; Donofrio, Chris J.; Van Wagoner, John C.; Deffenbaugh, Max, Method for geologic modeling through hydrodynamics-based gridding (Hydro-Grids).
  23. Suzuki, Satomi, Method for multiphase flow upscaling.
  24. Imhof, Matthias; Ghayour, Kaveh; Sun, Tao, Method for optimization with gradient information.
  25. Sun, Tao; Li, Dachang, Method for predicting fluid flow.
  26. Sun, Tao; Li, Dachang, Method for predicting fluid flow.
  27. Deffenbaugh,Max; Van Wagoner,John C.; Huh,Chun; Sun,Tao, Method for predicting grain size distribution from the shape of a sedimentary body.
  28. Li, Dachang; Wu, Xiao-Hui; Sun, Tao; Goulding, Frank J; Stuart, Robert M; Chartrand, Timothy A; Ramage, Cory J, Method for quantifying reservoir connectivity using fluid travel times.
  29. Masson,Roland; Cacas,Marie Christine; Dobranszky,Gabriela, Method for simulating the deposition of a sedimentary sequence in a basin.
  30. Granjeon, Didier, Method of developing a sedimentary basin from a stratigraphic simulation of multilithologic filling taking account of fine sediment transport.
  31. Kaminsky, Robert D., Method of developing subsurface freeze zone.
  32. Symington, William A.; Clayton, Erik H; Kaminsky, Robert D.; Manak, Larry J; Burns, James S., Method of recovering hydrocarbons within a subsurface formation using electric current.
  33. Cacas,Marie Christine, Method of sedimentologic interpretation by estimation of various chronological scenarios of sedimentary layers deposition.
  34. Masson,Roland; Cacas,Marie Christine; Dobranszky,Gabriela, Method of simulating the sedimentary deposition in a basin respecting the thicknesses of the sedimentary sequences.
  35. Deffenbaugh,Max; Hoyal,David C.; Adair,Neal L.; Huh,Chun, Method to determine properties of a sedimentary body from thickness and grain size distribution at a point within the body.
  36. Usadi, Adam; Li, Dachang; Parashkevov, Rossen; Terekhov, Sergey A.; Wu, Xiaohui; Yang, Yahan, Methods and systems for machine-learning based simulation of flow.
  37. Usadi, Adam; Li, Dachang; Parashkevov, Rossen; Terekhov, Sergey A.; Wu, Xiaohui; Yang, Yahan, Methods and systems for machine—learning based simulation of flow.
  38. Tapscott, Christopher; Schreuder, Steven R.; Kleist, Ronald J.; Mifflin, Richard Thomas; Ardic, Can; Kedzierski, Pierre; Patel, Kinesh K., Methods and systems to volumetrically conceptualize hydrocarbon plays.
  39. Kaminsky, Robert D; Symington, William A, Methods of producing hydrocarbons for substantially constant composition gas generation.
  40. Symington, William A.; Kaminsky, Robert D., Mitigating the effects of subsurface shunts during bulk heating of a subsurface formation.
  41. Li, Dachang; Sun, Tao; Wu, Xiao-Hui; Chartrand, Timothy A.; Lyons, Stephen L., Modeling dynamic systems by visualizing and narrowing a parameter space.
  42. Granjeon,Didier, Modelling method for forming a model simulating multilithologic filling of a sedimentary basin.
  43. Meurer, William P.; Shanley, Matthew T.; El-Rabaa, Abdel Wadood M., Multiple electrical connections to optimize heating for in situ pyrolysis.
  44. Kaminsky, Robert D., Olefin reduction for in situ pyrolysis oil generation.
  45. Haugen, Kjetil B., Optimized matrix and vector operations in instruction limited algorithms that perform EOS calculations.
  46. Kaminsky, Robert D; Symington, William A, Optimized well spacing for in situ shale oil development.
  47. Sun, Tao; Li, Dachang; Van Wagoner, John; Wu, Xiaohui, Overlapped multiple layer depth averaged flow model of a turbidity current.
  48. Kairo, Suzanne; Heins, William A.; Love, Karen M., Predicting sand-grain composition and sand texture.
  49. Kaminsky, Robert D.; Thomas, Michele M.; Blanton, Lauren; Nelson, Eric D.; Symington, William A., Process for producing hydrocarbon fluids combining in situ heating, a power plant and a gas plant.
  50. Kaminsky, Robert D., Resistive heater for in situ formation heating.
  51. Kaminsky, Robert D., Resistive heater for in situ formation heating.
  52. Cacas,Marie Christine, Seismic image deformation method for improved interpretation.
  53. Colvin,Richard Daniel; McColpin,Glenn Robert, System and method for automated platform generation.
  54. Colvin,Richard Daniel; McColpin,Glenn Robert, System and method for automated reservoir targeting.
  55. Mallet, Jean-Laurent; Labrunye, Emmanuel; Levy, Ronit; Hezy, Sharon, System and method for generating an implicit model of geological horizons.
  56. Mallet, Jean-Laurent, Systems and methods for building axes, co-axes and paleo-geographic coordinates related to a stratified geological volume.
  57. Mallet, Jean-Laurent, Systems and methods for building axes, co-axes and paleo-geographic coordinates related to a stratified geological volume.
  58. Mallet, Jean-Laurent; Dulac, Jean-Claude; Labrunye, Emmanuel; Winkler, Christophe; Deny, Laurent, Systems and methods for coordinated editing of seismic data in dual model.
  59. Mallet, Jean-Laurent; Dulac, Jean-Claude; Labrunye, Emmanuel; Winkler, Christophe; Deny, Laurent, Systems and methods for coordinated editing of seismic data in dual model.
  60. Li, Wan-Chiu; Deny, Laurent; Grosse, Olivier; Dulac, Jean-Claude, Systems and methods for generating a geological model honoring horizons and faults.
  61. Meurer, William P.; Fang, Chen; Gallo, Federico G.; Hoda, Nazish; Lin, Michael W., Systems and methods for in situ resistive heating of organic matter in a subterranean formation.
  62. Tertois, Anne-Laure; Mallet, Jean-Laurent; Deny, Laurent; Dulac, Jean-Claude, Systems and methods for modeling faults in the subsurface.
  63. Wenger, Jr., Lloyd M.; Meurer, William P.; Braun, Ana L; Carmo, Ana Maria Dos Santos; Lin, Michael W.; Wei, Zhibin, Systems and methods for regulating an in situ pyrolysis process.
  64. Meurer, William P.; Fang, Chen; Gallo, Federico G.; Hoda, Nazish; Lin, Michael W., Systems and methods of detecting an intersection between a wellbore and a subterranean structure that includes a marker material.
  65. Mallet, Jean-Laurent, Systems and methods to build sedimentary attributes.
  66. Mallet, Jean-Laurent; Tertois, Anne-Laure, Systems and processes for building multiple equiprobable coherent geometrical models of the subsurface.
  67. Kaminsky, Robert D.; Speed, C. Stan; Griffith, Todd S.; Starcher, Loren K.; Symington, William A., Utilization of low BTU gas generated during in situ heating of organic-rich rock.
  68. Yang, Yahan; Bi, Linfeng; Guo, Weidong; Parashkevov, Rossen; Wu, Xiaohui, Variable discretization method for flow simulation on complex geological models.
  69. Symington, William A.; Shah, Piyush S.; Miller, John D; Yeakel, Jesse D; Ghurye, Ganesh L, Water treatment following shale oil production by in situ heating.
  70. Kaminsky, Robert D.; Spiecker, P. Matthew; Searles, Kevin H., Wellbore mechanical integrity for in situ pyrolysis.
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