Changes in geophysical observables caused by CO2 injection into saline aquifers
To appraise the utility of geophysical techniques for monitoring CO2 injected into saline aquifers, we carried out numerical simulations based on an aquifer system underlying a portion of Tokyo Bay and calculated the temporal changes in geophysical observables caused by changing underground conditio...
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Published in | Energy procedia Vol. 4; pp. 3276 - 3283 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
2011
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Abstract | To appraise the utility of geophysical techniques for monitoring CO2 injected into saline aquifers, we carried out numerical simulations based on an aquifer system underlying a portion of Tokyo Bay and calculated the temporal changes in geophysical observables caused by changing underground conditions as computed by the reservoir simulation. The applicability of any particular method is likely to be highly site-specific, but the present calculations indicate that none of these techniques should be ruled out altogether. In addition to seismic methods (especially reflection surveys), micro-gravity surveys appear to be suitable for characterizing long-term changes, and SP measurements are quite responsive to short-term disturbances. |
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AbstractList | To appraise the utility of geophysical techniques for monitoring CO2 injected into saline aquifers, we carried out numerical simulations based on an aquifer system underlying a portion of Tokyo Bay and calculated the temporal changes in geophysical observables caused by changing underground conditions as computed by the reservoir simulation. The applicability of any particular method is likely to be highly site-specific, but the present calculations indicate that none of these techniques should be ruled out altogether. In addition to seismic methods (especially reflection surveys), micro-gravity surveys appear to be suitable for characterizing long-term changes, and SP measurements are quite responsive to short-term disturbances. |
Author | Ishido, Tsuneo Nakanishi, Shigetaka Akasaka, Chitoshi Sugihara, Mituhiko Tosha, Toshiyuki Kano, Yuki Nishi, Yuji |
Author_xml | – sequence: 1 givenname: Tsuneo surname: Ishido fullname: Ishido, Tsuneo email: ishido-t@aist.go.jp organization: Geological Survey of Japan, AIST, Central 7, Tsukuba 305-8567, Japan – sequence: 2 givenname: Toshiyuki surname: Tosha fullname: Tosha, Toshiyuki organization: Geological Survey of Japan, AIST, Central 7, Tsukuba 305-8567, Japan – sequence: 3 givenname: Chitoshi surname: Akasaka fullname: Akasaka, Chitoshi organization: Electric Power Development Company (J-Power), Tokyo, Japan – sequence: 4 givenname: Yuji surname: Nishi fullname: Nishi, Yuji organization: Geological Survey of Japan, AIST, Central 7, Tsukuba 305-8567, Japan – sequence: 5 givenname: Mituhiko surname: Sugihara fullname: Sugihara, Mituhiko organization: Geological Survey of Japan, AIST, Central 7, Tsukuba 305-8567, Japan – sequence: 6 givenname: Yuki surname: Kano fullname: Kano, Yuki organization: Geological Survey of Japan, AIST, Central 7, Tsukuba 305-8567, Japan – sequence: 7 givenname: Shigetaka surname: Nakanishi fullname: Nakanishi, Shigetaka organization: Electric Power Development Company (J-Power), Tokyo, Japan |
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Cites_doi | 10.2172/877331 10.1016/j.egypro.2009.01.274 10.2172/813566 10.1016/j.egypro.2009.02.110 10.1029/1999JB900093 10.1190/1.2991105 |
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Keywords | Trapping mechanism Modeling tools Geophysical monitoring techniques Saline aquifers |
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SubjectTerms | Geophysical monitoring techniques Modeling tools Saline aquifers Trapping mechanism |
Title | Changes in geophysical observables caused by CO2 injection into saline aquifers |
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