科学掘削による地震断層の応力状態・物性・すべりパラメーターの評価
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Published in | 地学雑誌 Vol. 126; no. 2; pp. 223 - 246 |
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Language | Japanese |
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公益社団法人 東京地学協会
2017
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ISSN | 0022-135X 1884-0884 |
DOI | 10.5026/jgeography.126.223 |
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Author | 廣瀬, 丈洋 濱田, 洋平 谷川, 亘 林, 為人 |
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Author_xml | – sequence: 1 fullname: 谷川, 亘 organization: 海洋研究開発機構高知コア研究所 – sequence: 1 fullname: 廣瀬, 丈洋 organization: 海洋研究開発機構高知コア研究所 – sequence: 1 fullname: 濱田, 洋平 organization: 海洋研究開発機構高知コア研究所 – sequence: 1 fullname: 林, 為人 organization: 海洋研究開発機構高知コア研究所 |
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References | Tanikawa, W., Mukoyoshi, H., Tadai, O., Hirose, T., Tsutsumi, A. and Lin, W. (2012): Velocity dependence of shear-induced permeability associated with frictional behavior in fault zones of the Nankai subduction zone. Journal of Geophysical Research, 117, B05405, doi:10.1029/2011JB008956. Kinoshita, M. and Tobin, H. (2013): Interseismic stress accumulation at the locked zone of Nankai Trough seismogenic fault off Kii Peninsula. Tectonophysics, 600, 153-164, doi:10.1016/j.tecto.2013.03.015. Ikari, M.J., Marone, C., Saffer, D.M. and Kopf, A.J. (2013): Slip weakening as a mechanism for slow earthquakes. Nature Geoscience, 6, 468-472, doi:10.1038/ngeo1818. Hirono, T., Yokoyama, T., Hamada, Y., Tanikawa, W., Mishima, T., Ikehara, M., Famin, V., Tanimizu, M., Lin, W., Soh, W. and Song, S-R. (2007): A chemical kinetic approach to estimate dynamic shear stress during the 1999 Taiwan Chi-Chi earthquake. Geophysical Research Letters, 34, L19308, doi:10.1029/2007GL030743. Ide, S., Baltay, A. and Beroza, G.C. (2011): Shallow dynamic overshoot and energetic deep rupture in the 2011 Mw9.0 Tohoku-Oki Earthquake. Science, 332, 1426-1429. Ito, T., Funato, A., Lin, W., Doan, M.-L., Boutt, D.F., Kano, Y., Ito, H., Saffer, D., McNeill, L.C., Byrne, T. and Moe, K.T. (2013): Determination of stress state in deep subsea formation by combination of hydraulic fracturing in situ test and core analysis: A case study in the IODP Expedition 319. Journal of Geophysical Research: Solid Earth, 118, doi:10.1002/jgrb.50086. Lin, W., Byrne, T., Kinoshita, M., McNeill, L., Chang, C., Lewis, J., Yamamoto, Y., Saffer, D., Moore, J.C., Wu, H.-Y., Tsuji, T., Yamada, Y., Conin, M., Saito, S., Ito, T., Tobin, H., Kimura, G., Kanagawa, K., Ashi, J., Underwood, M. and Kanamatsu, T. (2016): Distribution of stress state in the Nankai subduction zone, southwest Japan and a comparison with Japan Trench. Tectonophysics, 692, 120-130, doi:10.1016/j.tecto.2015.05.008. Ikehara, M., Hirono, T., Tadai, O., Sakaguchi, M., Kikuta, H., Fukuchi, T., Mishima, T., Nakamura, N., Aoike, N., Fujimoto, K., Hashimoto, Y., Ishikawa, T., Ito, H., Kinoshita, M., Lin, W., Masuda, K., Matsubara, T., Matsubayashi, O., Mizoguchi, K., Murayama, M., Otsuki, K., Sone, H., Takahashi, M., Tanikawa, W., Tanimizu, M., Soh, W. and Song, S. (2007): Low total and inorganic carbon contents within the Chelungpu fault. Geochemical Journal, 41, 391-396. Sweeney, J.J. and Burnham, A.K. (1990): Evaluation of a simple model of vitrinite reflectance based on chemical kinetics. American Association of Petroleum Geoiogisis Bulletin, 74, 1559-1570. Tobin, H.J., Henry, P., Vannucchi, P. and Screaton, E. (2014): Chapter 4.4.1 Subduction zones: Structure and deformation history. in Developments in Marine Geology Vol.7: Earth and Life Processes Discovered from Subseafloor Environment edited by Stein, R., Blackman, D.K., Inagaki, F. and Larsen, H-C., Elsevier, 599-640. Yamada, Y. and Shibanuma, J. (2015): Small-scale stress fluctuations in borehole breakouts and their implication in identifying potential active faults around the seismogenic megasplay fault, Nankai Trough, SW Japan. Earth, Planets and Space, 67, 17, doi:10.1186/s40623-014-0176-9. Byrne, T., Lin, W., Tsutsumi, A., Yamamoto, Y., Lewis, J., Kanagawa, K., Kitamura, Y., Yamaguchi, A. and Kimura, G. (2009): Anelastic strain recovery reveals extension across SW Japan subduction zone. Geophysical Research Letters, 36, L01305, doi:10.1029/2009GL040749. Tanikawa, W., Ishikawa, T., Honda, G., Hirono, T. and Tadai, O. (2015): Trace element anomaly in fault rock induced by coseismic hydrothermal reactions reproduced in laboratory friction experiments. Geophysical Research Letters, 42, doi:10.1002/2015GL063195. Mizoguchi, K., Hirose, T., Shimamoto, T. and Fukuyama, E. (2007): Reconstruction of seismic faulting by high-velocity friction experiments: An example of the 1995 Kobe earthquake. Geophysical Research Letters, 34, L01308, doi:10.1029/2006GL027931. Di Toro, G., Han, R., Hirose, T., De Paola, N., Nielsen, S., Mizoguchi K., Ferri, F., Cocco, M. and T. Shimamoto (2011): Fault lubrication during earthquakes. Nature, 471, 494-498. Hirose, T., Tanikawa, W., Sakaguchi, M., Tadai, O., Lin, W. and Scientific Party (2008): High-velocity frictional behavior of clay-rich sediments from IODP Expedition 316, Nankai Trough, offshore Japan. American Geophysical Union 2008 Fall Meeting, San Francisco, T31A-1980. Housen, B.A., Tobin, H.J., Labaume, P. Leitch, E.C., Maltman, A.J. and Ocean Drilling Program Leg 156 Shipboard Science Party (1996): Strain decoupling across the decollement of the Barbados accretionary prism. Geology, 24, 127-130. Kameda, J., Shimizu, M., Ujiie, K., Hirose, T., Ikari, M., Mori, J., Oohashi, K. and Kimura, G. (2015): Pelagic smectite as an important factor in tsunamigenic slip along the Japan Trench. Geology, 43, 155-158. Sawai, M., Hirose, T. and Kameda, J. (2014): Frictional properties of incoming pelagic sediments at the Japan Trench: Implications for large slip at a shallow plate boundary during the 2011 Tohoku earthquake. Earth, Planets and Space, 66, 65, doi:10.1186/1880-5981-66-65. Expedition 343/343T Scientists (2013): Site C0019. in Proceeding of the IODP edited by Chester, F., Mori, J., Eguchi, N., Toczko, S. and the Expedition 343 Scientists, Integrated Ocean Drilling Program Management International, Inc., Tokyo, 343/343T, doi:10.2204/iodp.proc.343343T.103.2013. Fujiwara, T., Kodaira, S., No, T., Kaiho, Y., Takahashi, N. and Kaneda, Y. (2011): The 2011 Tohoku-Oki earthquake: Displacement Reaching the trench axis. Science, 334, 1240, doi:10.1126/science.1211554. Lin, W., Tadai, O., Hirose, T., Tanikawa, W., Takahashi, M., Mukoyoshi, H. and Kinoshita, M. (2011b): Thermal conductivities under high pressure in core samples from IODP NanTroSEIZE drilling site C0001. Geochemistry, Geophysics, Geosystems, 12, Q0AD14, doi:10.1029/2010GC003449. Chang, C., McNeill, L.C., Moore, J.C., Lin, W., Conin, M. and Yamada, Y. (2010): In situ stress state in the Nankai accretionary wedge estimated from borehole wall failures. Geochemistry, Geophysics, Geosystems, 11, Q0AD04, doi:10.1029/2010GC003261. Matsuki, K. (1992): Theoretical examination of the method for measuring three-dimensional in-situ stress with anelastic strain recovery of rock. Shigen-to-Sozai, 108, 41-45. Moore, J.C., Chang, C., McNeill, L.C., Moe, T.K., Yamada, Y. and Huftile, G. (2011): Growth of borehole breakouts with time after drilling: implications for state of stress, NanTroSEIZE transect, SW Japan. Geochemistry, Geophysics, Geosystems, 12, Q04D09, doi:10.1029/2010GC003417. Ujiie, K., Tanaka, H., Saito, T., Tsutsumi, A., Mori, J.J., Kameda, J., Brodsky, E.E., Chester, F.M., Eguchi, N., Toczko, S. and Expedition 343 and 343T Scientists (2013): Low coseismic shear stress on the Tohoku-oki megathrust determined from laboratory experiments. Science, 342, 1211-1214, doi:10.1126/science.1243485. Song, I., Saffer, D.M. and Flemings, P.B. (2011): Mechanical characterization of slope sediments: Constraints on in situ stress and pore pressure near the tip of the megasplay fault in the Nankai accretionary complex. Geochemistry, Geophysics, Geosystems, 12, Q0AD17, doi:10.1029/2011GC003556. Cui, W., Lin, W., Wang, L., Gao, L., Huang, Y., Wang, W., Sun, D., Li, Z., Zhou, J., Qian, H., Peng, H., Xia, K. and Li, K. (2014): Determination of three-dimensional in situ stresses by anelastic strain recovery in Wenchuan Earthquake Fault Scientific Drilling Project Hole-1 (WFSD-1). Tectonophysics, 619-620, 123-132, doi:10.1016/j.tecto.2013.09.013. Saffer, D.M., Flemings, P.B., Boutt, D., Doan, M.-L., Ito, T., McNeill, L., Byrne, T., Conin, M., Lin, W., Kano, Y., Araki, E., Eguchi, N. and Toczko, S. (2013): In situ stress and pore pressure in the Kumano Forearc Basin, offshore SW Honshu from downhole measurements during riser drilling. Geochemistry, Geophysics, Geosystems, 14, 1454-1470, doi:10.1002/ggge.20051. Wu, H.-Y., Kinoshita, M. and Sanada, Y. (2012): Stress state estimation by geophysical logs in NanTroSEIZE Expedition 319-Site C0009, Kumano Basin, southwest Japan. Geophysical Research Letters, 39, L18303, doi:10.1029/2012GL053086. Lin, W., Yamamoto, K., Ito, H., Masago, H. and Kawamura, Y. (2008): Estimation of minimum principal horizontal stress from an extended leak-off test onboard the Chikyu drilling vessel and suggestions for future test procedures. Scientific Drilling, 6, 43-47, doi:10.2204/iodp.sd.6.06.2008. Zoback, M.D. (2007): Reservoir Geomechanics. Cambridge University Press, New York, doi:10.1017/CBO9780511586477. Tsuji, T., Hino, R., Sanada, Y., Yamamoto, K., Park, J., No, T., Araki, E., Bangs, N., von Huene, R., Moore, G. and Kinoshita, M. (2011): In situ stress state from walk around VSP anisotropy in the Kumano basin southeast of the Kii Peninsula, Japan. Geochemistry, Geophysics, Geosystems, 12, Q0AD19, doi:10.1029/2011GC003583. Suzuki, N., Matsubayashi, H. and Waples, D.W. (1993): A simpler kinetic model of vitrinite reflectance. AAPG Bulletin, 77, 1502-1508. Lee, H., Chang, C., Ong, S.H. and Song, I. (2013): Effect of anisotropic borehole wall failures when estimating in situ stresses: A case study in the Nankai accretionary wedge. Marine and Petroleum Geology, 48, 411-422, doi:10.1016/j.marpetgeo.2013.09.004. Tanikawa, W., Tadai, O., Morita, S., Lin, W., Yamada, Y., Sanada, Y., Moe, K., Kubo, Y. and Inagaki, F. (2016): Thermal properties and thermal structure in the deep-water coalbed basin off the Shimokita Peninsula, Japan. Marine and Petroleum Geology, 73, 445-461, doi:10.1016/j.marpetgeo.2016.03.006. Tanikawa, W., Hirose, T., Mukoyoshi, H., Tadai, O. and Lin, W. (2013): Fluid transport properties in sediments and their role in large slip near the surface of the plate boundary fault in the Japan Trench. Earth and Planetary Science Letters, 382, 150-160, do:10.1016/j.epsl.2013.08.052. Lin, W., Fulton, P.M., Harris, R.N., Tadai, O., Matsubayashi, O., Tanikawa, W. and Kinoshita, M. (2014): Thermal conduct |
References_xml | – reference: Ujiie, K. and Tsutsumi, A. (2010): High-velocity frictional properties of clay-rich fault gouge in a megasplay fault zone, Nankai subduction zone. Geophysical Research Letters, 37, L24310, doi:10.1029/2010GL046002. – reference: Kameda, J., Shimizu, M., Ujiie, K., Hirose, T., Ikari, M., Mori, J., Oohashi, K. and Kimura, G. (2015): Pelagic smectite as an important factor in tsunamigenic slip along the Japan Trench. Geology, 43, 155-158. – reference: Argus, D.F., Gordon, R.G. and DeMets, C. (2011): Geologically current motion of 56 plates relative to the no-net-rotation reference frame. Geochemistry, Geophysics, Geosystems, 12, Q11001, doi:10.1029/2011GC003751. – reference: Expedition 343/343T Scientists (2013): Site C0019. in Proceeding of the IODP edited by Chester, F., Mori, J., Eguchi, N., Toczko, S. and the Expedition 343 Scientists, Integrated Ocean Drilling Program Management International, Inc., Tokyo, 343/343T, doi:10.2204/iodp.proc.343343T.103.2013. – reference: Hirose, T. and Bystricky, M. (2007): Extreme dynamic weakening of faults during dehydration by coseismic shear heating. Geophysical Research Letters, 34, L14311, doi:10.1029/2007GL030049. – reference: McKenzie, D. and Brune, J.N. (1972): Melting on fault planes during large earthquakes. Geophysical Journal of the Royal Astronomical Society, 29, 65-78, doi:10.1111/j.1365-246X.1972.tb06152.x. – reference: Byrne, T., Lin, W., Tsutsumi, A., Yamamoto, Y., Lewis, J., Kanagawa, K., Kitamura, Y., Yamaguchi, A. and Kimura, G. (2009): Anelastic strain recovery reveals extension across SW Japan subduction zone. Geophysical Research Letters, 36, L01305, doi:10.1029/2009GL040749. – reference: Tanikawa, W., Ishikawa, T., Honda, G., Hirono, T. and Tadai, O. (2015): Trace element anomaly in fault rock induced by coseismic hydrothermal reactions reproduced in laboratory friction experiments. Geophysical Research Letters, 42, doi:10.1002/2015GL063195. – reference: Tsuji, T., Hino, R., Sanada, Y., Yamamoto, K., Park, J., No, T., Araki, E., Bangs, N., von Huene, R., Moore, G. and Kinoshita, M. (2011): In situ stress state from walk around VSP anisotropy in the Kumano basin southeast of the Kii Peninsula, Japan. Geochemistry, Geophysics, Geosystems, 12, Q0AD19, doi:10.1029/2011GC003583. – reference: Song, I., Saffer, D.M. and Flemings, P.B. (2011): Mechanical characterization of slope sediments: Constraints on in situ stress and pore pressure near the tip of the megasplay fault in the Nankai accretionary complex. Geochemistry, Geophysics, Geosystems, 12, Q0AD17, doi:10.1029/2011GC003556. – reference: Lin, W., Yeh, E.C., Ito, H., Hirono, T., Soh, W., Wang, C.Y., Ma, K.F., Hung, J.H. and Song, S.R. (2007): Preliminary results of stress measurement using drill cores of TCDP Hole-A: An application of anelastic strain recovery method to three-dimensional in-situ stress determination. Terrestrial, Atmospheric and Oceanic Sciences (TAO), 18, 379-393, doi:10.3319/TAO.2007.18.2.379(TCDP). – reference: Ide, S., Baltay, A. and Beroza, G.C. (2011): Shallow dynamic overshoot and energetic deep rupture in the 2011 Mw9.0 Tohoku-Oki Earthquake. Science, 332, 1426-1429. – reference: Tanikawa, W., Tadai, O. and Mukoyoshi, H. (2014b): Permeability changes in simulated granite faults during and after frictional sliding. Geofluids, doi:10.1111/gfl.12091. – reference: Lin, W., Kwasniewski, M., Imamura, T. and Matsuki, K. (2006): Determination of three-dimensional in-situ stresses from anelastic strain recovery measurement of cores at great depth. Tectonophysics, 426, 221-238, doi:10.1016/j.tecto.2006.02.019. – reference: Suzuki, N., Matsubayashi, H. and Waples, D.W. (1993): A simpler kinetic model of vitrinite reflectance. AAPG Bulletin, 77, 1502-1508. – reference: Tsutsumi, A. (2009): Weakening mechanisms of rocks at fast slip rates: Example from the cases without frictional melting. Journal of the Seismological Society of Japan. 2nd ser., 61, 527-533. – reference: Wu, H.-Y., Kinoshita, M. and Sanada, Y. (2012): Stress state estimation by geophysical logs in NanTroSEIZE Expedition 319-Site C0009, Kumano Basin, southwest Japan. Geophysical Research Letters, 39, L18303, doi:10.1029/2012GL053086. – reference: Ikari, M.J., Marone, C., Saffer, D.M. and Kopf, A.J. (2013): Slip weakening as a mechanism for slow earthquakes. Nature Geoscience, 6, 468-472, doi:10.1038/ngeo1818. – reference: Moore, J.C., Chang, C., McNeill, L.C., Moe, T.K., Yamada, Y. and Huftile, G. (2011): Growth of borehole breakouts with time after drilling: implications for state of stress, NanTroSEIZE transect, SW Japan. Geochemistry, Geophysics, Geosystems, 12, Q04D09, doi:10.1029/2010GC003417. – reference: Lin, W., Fulton, P.M., Harris, R.N., Tadai, O., Matsubayashi, O., Tanikawa, W. and Kinoshita, M. (2014): Thermal conductivities, thermal diffusivities, and volumetric heat capacities of core samples obtained from the Japan Trench Fast Drilling Project (JFAST). Earth, Planets and Space, 66, 48, doi:10.1186/1880-5981-66-48. – reference: Sawai, M., Hirose, T. and Kameda, J. (2014): Frictional properties of incoming pelagic sediments at the Japan Trench: Implications for large slip at a shallow plate boundary during the 2011 Tohoku earthquake. Earth, Planets and Space, 66, 65, doi:10.1186/1880-5981-66-65. – reference: Tanikawa, W., Mukoyoshi, H., Tadai, O., Hirose, T., Tsutsumi, A. and Lin, W. (2012): Velocity dependence of shear-induced permeability associated with frictional behavior in fault zones of the Nankai subduction zone. Journal of Geophysical Research, 117, B05405, doi:10.1029/2011JB008956. – reference: Lin, W., Byrne, T., Kinoshita, M., McNeill, L., Chang, C., Lewis, J., Yamamoto, Y., Saffer, D., Moore, J.C., Wu, H.-Y., Tsuji, T., Yamada, Y., Conin, M., Saito, S., Ito, T., Tobin, H., Kimura, G., Kanagawa, K., Ashi, J., Underwood, M. and Kanamatsu, T. (2016): Distribution of stress state in the Nankai subduction zone, southwest Japan and a comparison with Japan Trench. Tectonophysics, 692, 120-130, doi:10.1016/j.tecto.2015.05.008. – reference: Tsuji, T., Kamei, R. and Pratt, R.G. (2014): Pore pressure distribution of a mega-splay fault system in the Nankai Trough subduction zone: Insight into up-dip extent of the seismogenic zone. Earth and Planetary Science Letters, 396, 165-178, doi:10.1016/j.epsl.2014.04.011. – reference: Nagano, Y., Lin, W. and Yamamoto, K. (2015): In-situ stress analysis using the anelastic strain recovery (ASR) method at the first offshore gas production test site in the eastern Nankai Trough, Japan. Marine and Petroleum Geology, 66, 418-424, doi:10.1016/j.marpetgeo.2015.02.027. – reference: Hamada, Y., Hirono, T., Ikehara, M., Soh, W. and Song, S.-R. (2009): Estimated dynamic shear stress and frictional heat during the 1999 Taiwan Chi-Chi earthquake: A chemical kinetics approach with isothermal heating experiments. Tectonophysics, 469, 73-84, doi:10.1016/j.tecto.2009.01.036. – reference: Kameda, J., Yamamoto, Y., Hamada, Y., Fujimoto, K. and Kimura, G. (2013): Progress of illitization along an imbricate frontal thrust at shallow depths in an accretionary prism. Tectonophysics, 600, 41-51, doi:10.1016/j.tecto.2013.04.024. – reference: Tobin, H.J., Henry, P., Vannucchi, P. and Screaton, E. (2014): Chapter 4.4.1 Subduction zones: Structure and deformation history. in Developments in Marine Geology Vol.7: Earth and Life Processes Discovered from Subseafloor Environment edited by Stein, R., Blackman, D.K., Inagaki, F. and Larsen, H-C., Elsevier, 599-640. – reference: Yamamoto, Yuzuru, Lin, W., Oda, H., Byrne, T. and Yamamoto, Y. (2013): Stress states at the subduction input site, Nankai Subduction Zone, using anelastic strain recovery (ASR) data in the basement basalt and overlying sediments. Tectonophysics, 600, 91-98, doi:10.1016/j.tecto.2013.01.028. – reference: Hirose, T., Tanikawa, W., Sakaguchi, M., Tadai, O., Lin, W. and Scientific Party (2008): High-velocity frictional behavior of clay-rich sediments from IODP Expedition 316, Nankai Trough, offshore Japan. American Geophysical Union 2008 Fall Meeting, San Francisco, T31A-1980. – reference: Lee, H., Chang, C., Ong, S.H. and Song, I. (2013): Effect of anisotropic borehole wall failures when estimating in situ stresses: A case study in the Nankai accretionary wedge. Marine and Petroleum Geology, 48, 411-422, doi:10.1016/j.marpetgeo.2013.09.004. – reference: Wu, H.-Y., Saito, S. and Kinoshita, M. (2015): Stress state and its anomaly observations in the vicinity of a fault in NanTroSEIZE Expedition 322. Geochemistry, Geophysics, Geosystems, 16, doi:10.1002/2015GC006072. – reference: Fulton, P.M., Brodsky, E.E., Kano, Y., Mori, J., Chester, F., Ishikawa, T., Harris, R.N., Lin, W., Eguchi, N., Toczko, S., Expedition 343, 343T and KR13-08 Scientists (2013): Low coseismic friction on the Tohoku-Oki fault determined from temperature measurements. Science, 342, 1214-1217, doi:10.1126/science.1243641. – reference: Kinoshita, M. and Tobin, H. (2013): Interseismic stress accumulation at the locked zone of Nankai Trough seismogenic fault off Kii Peninsula. Tectonophysics, 600, 153-164, doi:10.1016/j.tecto.2013.03.015. – reference: Ikari, M.J., Ito, Y., Ujiie, K. and Kopf, A.J. (2015): Spectrum of slip behaviour in Tohoku fault zone samples at plate tectonic slip rates. Nature Geoscience, 8, 870-874, doi:10.1038/ngeo2547. – reference: Lin, W., Yamamoto, K., Ito, H., Masago, H. and Kawamura, Y. (2008): Estimation of minimum principal horizontal stress from an extended leak-off test onboard the Chikyu drilling vessel and suggestions for future test procedures. Scientific Drilling, 6, 43-47, doi:10.2204/iodp.sd.6.06.2008. – reference: Chester, F.M., Mori, J.J., Toczko, S., Eguchi, N. and the Expedition 343/343T Scientists (2012): Japan Trench Fast Drilling Project (JFAST). IODP Preliminary Report. 343/343T, doi:10.2204/iodp.pr.343343T.2012. – reference: Jones, G., Fisher, G.J. and Knipe, R.J. eds. (1998): Faulting, Fault Sealing and Fluid Flow in Hydrocarbon Reservoirs. Special Publication Geological Society London, 147. – reference: Ito, T., Funato, A., Lin, W., Doan, M.-L., Boutt, D.F., Kano, Y., Ito, H., Saffer, D., McNeill, L.C., Byrne, T. and Moe, K.T. (2013): Determination of stress state in deep subsea formation by combination of hydraulic fracturing in situ test and core analysis: A case study in the IODP Expedition 319. Journal of Geophysical Research: Solid Earth, 118, doi:10.1002/jgrb.50086. – reference: Lewis, J., Byrne, T. and Kanagawa, K. (2013): Evidence for mechanical decoupling of the upper plate at the Nankai subduction zone: Constraints from core-scale faults at NantroSEIZE Sites C0001 and C0002. Geochemistry, Geophysics, Geosystems, 14, 620-633, doi:10.1029/2012GC004406. – reference: Sweeney, J.J. and Burnham, A.K. (1990): Evaluation of a simple model of vitrinite reflectance based on chemical kinetics. American Association of Petroleum Geoiogisis Bulletin, 74, 1559-1570. – reference: Lin, W., Conin, M., Moore, J.C., Chester, F.M., Nakamura, Y., Mori, J.J., Anderson, L., Brodsky, E.E., Eguchi, H. and Expedition 343 Scientists (2013): Stress state in the largest displacement area of the 2011 Tohoku-Oki earthquake. Science, 339, 687-690, doi:10.1126/science.1229379. – reference: Matsuki, K. (1992): Theoretical examination of the method for measuring three-dimensional in-situ stress with anelastic strain recovery of rock. Shigen-to-Sozai, 108, 41-45. – reference: Hamada, Y., Sakaguchi, A., Tanikawa, W., Yamaguchi, A., Kameda, J. and Kimura, G. (2015): Estimation of slip rate and fault displacement during shallow earthquake rupture in the Nankai subduction zone. Earth, Planets and Space, 67, 39. – reference: Sibson, R.H. (1975): Generation of pseudotachylyte by ancient seismic faulting. Geophysical Journal of the Royal Astronomical Society, 43, 775-794. – reference: Voight, B. (1968): Determination of the virgin state of stress in the vicinity of a borehole from measurements of a partial anelastic strain tensor in drill cores. Felsmechanik und Ingenieurgeologie, 6, 201-215. – reference: Tanikawa, W., Hirose, T., Mukoyoshi, H., Tadai, O. and Lin, W. (2013): Fluid transport properties in sediments and their role in large slip near the surface of the plate boundary fault in the Japan Trench. Earth and Planetary Science Letters, 382, 150-160, do:10.1016/j.epsl.2013.08.052. – reference: Cardwell, R., Chinn, D.S., Moore, G.F. and Turcotteet, D.L. (1978): Frictional heating on a fault zone with finite thickness. Geophysical Journal of the Royal Astronomical Society, 52, 525-530. – reference: Chang, C., McNeill, L.C., Moore, J.C., Lin, W., Conin, M. and Yamada, Y. (2010): In situ stress state in the Nankai accretionary wedge estimated from borehole wall failures. Geochemistry, Geophysics, Geosystems, 11, Q0AD04, doi:10.1029/2010GC003261. – reference: Yamaguchi, A., Sakaguchi, A., Sakamoto, T., Iijima, K., Kameda, J., Kimura, G., Ujiie, K., Chester, F.M., Fabbri, O., Goldsby, D., Tsutsumi, A., Li, C.F. and Curewitz, D. (2011): Progressive illitization in fault gouge caused by seismic slip propagation along a megasplay fault in the Nankai Trough. Geology, doi:10.1130/G32038.1. – reference: Ishikawa, T., Tanimizu, M., Nagaishi, K., Matsuoka, J., Tada,i O., Sakaguchi, M., Hirono, T., Mishima, T., Tanikawa, W., Lin, W., Kikuta, H., Soh, W. and Song, S-R. (2008): Coseismic fluid–rock interactions at high temperatures in the Chelungpu fault. Nature Geoscience, 1, 679-683, doi:10.1038/ngeo308. – reference: Tanikawa, W., Mukoyoshi, H., Lin, W., Hirose T. and Tsutsumi, A. (2014a): Pressure dependence of fluid transport properties of shallow fault systems in the Nankai subduction zone. Earth, Planets and Space, 66, 90, doi:10.1186/1880-5981-66-90. – reference: * Title etc. translated by W.L. – reference: Shimamoto, T. and Tsutsumi, A. (1994): A new rotary-shear high-speed frictional testing machine: Its basic design and scope of research. Japanese Journal of Structural Geology, 39, 65-78. – reference: Cui, W., Lin, W., Wang, L., Gao, L., Huang, Y., Wang, W., Sun, D., Li, Z., Zhou, J., Qian, H., Peng, H., Xia, K. and Li, K. (2014): Determination of three-dimensional in situ stresses by anelastic strain recovery in Wenchuan Earthquake Fault Scientific Drilling Project Hole-1 (WFSD-1). Tectonophysics, 619-620, 123-132, doi:10.1016/j.tecto.2013.09.013. – reference: Tsutsumi, A., Fabbri, O., Karpoff, A.M., Ujiie, K. and Tsujimoto, A. (2011): Friction velocity dependence of clay-rich fault material along a megasplay fault in the Nankai subduction zone at intermediate to high velocities. Geophysical Research Letters, 38, L19301, doi:10.1029/2011GL049314. – reference: Matsuki, K. and Takeuchi, K. (1993): Three-dimensional in-situ stress determination by anelastic strain recovery of a rock core. International Journal of Rock Mechanics and Mining Sciences & Geomechanics Abstracts, 30, 1019-1022. – reference: Lin, W., Tadai, O., Hirose, T., Tanikawa, W., Takahashi, M., Mukoyoshi, H. and Kinoshita, M. (2011b): Thermal conductivities under high pressure in core samples from IODP NanTroSEIZE drilling site C0001. Geochemistry, Geophysics, Geosystems, 12, Q0AD14, doi:10.1029/2010GC003449. – reference: Teufel, L.W. (1983): Determination of in-situ stress from anelastic strain recovery measurements of oriented core. SPE Paper 11649, SPE/DOE Symposium on Low Permeability, Denver, CO, 421-430. – reference: Kimura, G., Hina, S., Hamada, Y., Kameda, J., Tsuji, T., Kinoshita, M. and Yamaguchi, A. (2012): Runaway slip to the trench due to rupture of highly pressurized megathrust beneath the middle trench slope: The tsunamigenesis of the 2011 Tohoku earthquake off the east coast of northern Japan. Earth and Planetary Science Letters, 339-340, 32-45. – reference: Lin, W. and 33 others (2010): Present-day principal horizontal stress orientations in the Kumano forearc basin of the southwest Japan subduction zone determined from IODP NanTroSEIZE drilling Site C0009. Geophysical Research Letters, 37, L13303, doi:10.1029/2010GL043158. – reference: Ujiie, K., Tanaka, H., Saito, T., Tsutsumi, A., Mori, J.J., Kameda, J., Brodsky, E.E., Chester, F.M., Eguchi, N., Toczko, S. and Expedition 343 and 343T Scientists (2013): Low coseismic shear stress on the Tohoku-oki megathrust determined from laboratory experiments. Science, 342, 1211-1214, doi:10.1126/science.1243485. – reference: Yamada, Y. and Shibanuma, J. (2015): Small-scale stress fluctuations in borehole breakouts and their implication in identifying potential active faults around the seismogenic megasplay fault, Nankai Trough, SW Japan. Earth, Planets and Space, 67, 17, doi:10.1186/s40623-014-0176-9. – reference: Fujiwara, T., Kodaira, S., No, T., Kaiho, Y., Takahashi, N. and Kaneda, Y. (2011): The 2011 Tohoku-Oki earthquake: Displacement Reaching the trench axis. Science, 334, 1240, doi:10.1126/science.1211554. – reference: Ikehara, M., Hirono, T., Tadai, O., Sakaguchi, M., Kikuta, H., Fukuchi, T., Mishima, T., Nakamura, N., Aoike, N., Fujimoto, K., Hashimoto, Y., Ishikawa, T., Ito, H., Kinoshita, M., Lin, W., Masuda, K., Matsubara, T., Matsubayashi, O., Mizoguchi, K., Murayama, M., Otsuki, K., Sone, H., Takahashi, M., Tanikawa, W., Tanimizu, M., Soh, W. and Song, S. (2007): Low total and inorganic carbon contents within the Chelungpu fault. Geochemical Journal, 41, 391-396. – reference: Conin, M., Bourlange, S., Henry, P., Boiselet, A. and Gaillot, P. (2014): Distribution of resistive and conductive structures in Nankai accretionary wedge reveals contrasting stress paths. Tectonophysics, 611, 181-191. – reference: Saffer, D.M., Flemings, P.B., Boutt, D., Doan, M.-L., Ito, T., McNeill, L., Byrne, T., Conin, M., Lin, W., Kano, Y., Araki, E., Eguchi, N. and Toczko, S. (2013): In situ stress and pore pressure in the Kumano Forearc Basin, offshore SW Honshu from downhole measurements during riser drilling. Geochemistry, Geophysics, Geosystems, 14, 1454-1470, doi:10.1002/ggge.20051. – reference: Tanikawa, W., Sakaguchi, M., Tadai, O. and Hirose, T. (2010): Influence of fault slip rate on shear-induced permeability. Journal of Geophysical Research, doi:10.1029/2009JB007013. – reference: Sakaguchi, A, Chester, F., Curewitz, D., Fabbri, O., Goldsby, D., Kimura, G., Li, C.F., Masaki, Y., Screaton, E.J., Tsutsumi, A., Ujiie, K. and Yamaguchi, A. (2011): Seismic slip propagation to the up-dip end of plate boundary subduction interface faults: Vitrinite reflectance geothermometry on Integrated Ocean Drilling Program NanTroSEIZE cores. Geology, 39, 395-399, doi:10.1130/G31642.1. – reference: Di Toro, G., Han, R., Hirose, T., De Paola, N., Nielsen, S., Mizoguchi K., Ferri, F., Cocco, M. and T. Shimamoto (2011): Fault lubrication during earthquakes. Nature, 471, 494-498. – reference: Mizoguchi, K., Hirose, T., Shimamoto, T. and Fukuyama, E. (2007): Reconstruction of seismic faulting by high-velocity friction experiments: An example of the 1995 Kobe earthquake. Geophysical Research Letters, 34, L01308, doi:10.1029/2006GL027931. – reference: Tanikawa, W., Tadai, O., Morita, S., Lin, W., Yamada, Y., Sanada, Y., Moe, K., Kubo, Y. and Inagaki, F. (2016): Thermal properties and thermal structure in the deep-water coalbed basin off the Shimokita Peninsula, Japan. Marine and Petroleum Geology, 73, 445-461, doi:10.1016/j.marpetgeo.2016.03.006. – reference: Kinoshita, M., Kimura, G. and Saito, S. (2014): Chapter 4.4.2 Seismogenic Processes revealed through The Nankai Trough Seismogenic Zone Experiments: Core, log, geophysics and observatory measurements. in Developments in Marine Geology Vol.7: Earth and Life Processes Discovered from Subseafloor Environment edited by Stein, R., Blackman, D.K., Inagaki, F. and Larsen, H-C., Elsevier, 641-670. – reference: Faulkner, D.R., Jackson, C., Lunn, R.J., Schlische, R.W., Shipton, Z.K., Wibberley, C. and Withjack, M.O. (2010): A review of recent developments concerning the structure, mechanics and fluid flow properties of fault zones. Journal of Structural Geology, 32, 1557-1575, doi:10.1016/j.jsg.2010.06.009. – reference: Oohashi, K., Hirose, T., Takahashi, M. and Tanikawa, W. (2015): Dynamic weakening of smectite-bearing faults at intermediate velocities: Implications for subduction zone earthquakes. Journal of Geophysical Research: Solid Earth, 120, 1572-1586, doi:10.1002/2015JB011881. – reference: Hot Disk (2007): Instruction Manual, Hot Disk Thermal Constants Analyser—Software Version 5.9—. 42p. – reference: Lin, W., Saito, S., Sanada, Y., Yamamoto, Y., Hashimoto, Y. and Kanamatsu, T. (2011a): Principal horizontal stress orientations prior to the 2011 Mw 9.0 Tohoku-Oki, Japan, earthquake in its source area. Geophysical Research Letters, 38, L00G10, doi:10.1029/2011GL049097. – reference: Hamada, Y., Hirono, T. and Ishikawa, T. (2011): Coseismic frictional heating and fluid-rock interaction in a slip zone within a shallow accretionary prism and implications for earthquake slip behavior. Journal of Geophysical Research, 116, B01302, doi:10.1029/2010JB007730. – reference: Hirono, T., Yokoyama, T., Hamada, Y., Tanikawa, W., Mishima, T., Ikehara, M., Famin, V., Tanimizu, M., Lin, W., Soh, W. and Song, S-R. (2007): A chemical kinetic approach to estimate dynamic shear stress during the 1999 Taiwan Chi-Chi earthquake. Geophysical Research Letters, 34, L19308, doi:10.1029/2007GL030743. – reference: Wu H.-Y., Chan, C.-H., Kinoshita, M. and Saito, S. (2013): Stress field observation and modeling from the NanTroSEIZE Scientific Drillings in the Nankai Trough system, SW Japan. Tectonophysics, 600, 99-107, doi:10.1016/j.tecto.2013.04.009. – reference: Housen, B.A., Tobin, H.J., Labaume, P. Leitch, E.C., Maltman, A.J. and Ocean Drilling Program Leg 156 Shipboard Science Party (1996): Strain decoupling across the decollement of the Barbados accretionary prism. Geology, 24, 127-130. – reference: Zoback, M.D. (2007): Reservoir Geomechanics. Cambridge University Press, New York, doi:10.1017/CBO9780511586477. – reference: Mori, J.J., Chester, F.M., Eguchi, N. and Toczko, S. (2012): Japan Trench Fast Earthquake Drilling Project (JFAST). IODP Scientific Prospectus, 343, doi:10.2204/iodp.sp.343.2012. |
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SubjectTerms | 地震断層 応力 摩擦係数 浸透率 温度 熱物性 |
Title | 科学掘削による地震断層の応力状態・物性・すべりパラメーターの評価 |
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