Measurements of Post-seismic Stress State to 700 Meters Depth Using Anelastic Strain Recovery Method in Source Area of the 2016 Kumamoto Earthquakes
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- SUGIMOTO Tatsuhiro
- Graduate School of Engineering, Kyoto University
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- SHIBUTANI Susumu
- Graduate School of Engineering, Kyoto University Chi-ken Sogo Consultants Co., Ltd.
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- LIN Weiren
- Graduate School of Engineering, Kyoto University
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- MURATA Sumihiko
- Graduate School of Engineering, Kyoto University
Bibliographic Information
- Other Title
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- 非弾性ひずみ回復法を用いた熊本地震震源域における深度700mまでの地震後応力状態の測定
- ヒダンセイヒズミ カイフクホウ オ モチイタ クマモト ジシン シンゲンイキ ニ オケル シンド 700m マデ ノ ジシン ゴ オウリョク ジョウタイ ノ ソクテイ
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Description
<p>When considering the mechanism of earthquake occurrence, the stress state in the vicinity of the source fault is essential. In this study, we applied anelastic strain recovery method(ASR method)to a total of 20 rock core samples retrieved from a borehole penetrating the Futagawa fault, one of the source faults of the 2016 Kumamoto earthquakes and succeeded in determining the in-situ stress state using 6 core samples. The results reveal that the normal faulting stress regime dominates in the source area, which says that the vertical stress is the maximum principal stress(σ1). This implicates the magnitude of the maximum horizontal stress(SHmax), which is estimated to have been the maximum principal stress(σ1)before the earthquakes, has dropped significantly due to the strike-slip faulting during the earthquakes. The result that the stress state after the earthquakes is the normal faulting regime is consistent with the results obtained by hydraulic fracturing and focal mechanism conducted in the same area. We also reveal that the direction of the minimum horizontal stress(Shmin)is almost orthogonal to the strike of the Futagawa fault, which indicates that the horizontal shear stress that causes strike-slip faulting on the fault plane is very small.</p>
Journal
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- Journal of the Japan Society of Engineering Geology
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Journal of the Japan Society of Engineering Geology 62 (1), 13-22, 2021-04-10
Japan Society of Engineering Geology
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Keywords
Details 詳細情報について
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- CRID
- 1390289995279842176
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- NII Article ID
- 130008114357
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- NII Book ID
- AN00026635
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- ISSN
- 18840973
- 02867737
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- NDL BIB ID
- 031429874
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- Text Lang
- ja
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- Data Source
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- JaLC
- NDL
- Crossref
- CiNii Articles
- KAKEN
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- Abstract License Flag
- Disallowed