Landslides in tuff of the Kobe Group Yokoyama, S., Murai, M., Katoh, Y., Tani, Y. and Fujita, T.
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1 Landslides in tuff of the Kobe Group Yokoyama, S., Murai, M., Katoh, Y., Tani, Y. and Fujita, T.
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3 Landslides in tuff of the Kobe Group * Shunji Yokoyama*, Masanori Murai, Yasuo Katoh, Yasutaka Tani and Takashi Fujita 931m m 1 2 Department of Natural Environmental Science, Kochi University, Kochi , Japan Graduate School of Kuroshio Science, Kochi University, Kochi , Japan Kawasaki Geological Engineering Co., Gion-cho 1-40, Hakata-ku, Fukuoka , Japan Faculty of Engineering, Osaka Institute of Technology, Omiya , Asahi-ku, Osaka , Japan Fault Research Data Center, Tachiuribori 4-3-2, Nishi-ku, Osaka , Japan kyu-tf 2 kyu-tf 2 1/ 50,
4 135 E E Sanda C N Ono C.? SandaBasin Miki C. Kakogawa C. RokkoMountains N SetoInland Sea Awaji Island Akashi C. Akashi Straits OsakaBay 0 10km KobeCity 1:upper PleistoceneHolocene, 2:Pliocenemiddle Pleistocene, 36:Kobe Group(3:Hosokawa Formation, 4:Yokawa Formation, 5:Sanda Formation, 6:Iwaya Formation), 7:pre-Tertiary, 8:fault K Ar 1,
5 42 30Ma Imaoka et al m 20km (1961) , 1983 Huzita et al. (1971)
6 Miocne Mitsuda F. 60m+ Ougo F. 110m± Yokawa F. 160m+ Arino F. 175m Lower Upper Lower Upper Lower Upper Lower Upper Ougo F. 190m Yokawa F. 180m± Arino F. 175m Upper Lower Lower Upper Lower Upper Kurumi T. Horinji T. Ishigamiyama T. Yokawa T. Myotomatsu T. Late Eocene - Early Oligocene? Ishigamiyama T. Rengeji T. Okutani T. Kitahata T. Ichihiara T. Toyooka T. Nakaoozo T. Taki T. Toda T. Ishigamiyama T. Kitahata T. Kamikume T. Tojo-ko T. Hosokawa F. 60m Harasaka Ms. M. 25m Kichiyasu Ss., Ms. and Cgl. M m Nagao Ss. & Ms. M. 30-m Shimoisawa Ms. M m Nitta Cgl. M. 40-m Toishigawa Ms. & Ss. M. -50m Yokawa F. 400m Sanda F m Ikebe (eds.)(1961) Huzita and Kasama( ) Huzita et al.(1971) Kinki Regional Agricultural Administration Office(4) Ozaki and Matsuura(1988) 3 (4)(0) km
7 ab EPMA Mg/(Fe+Mn+Mg) mg mg mg mg = mg = mg = mg = 0.69 mg =
8 4 Mg/Fe+Mn+Mg 0 118
9 gull CaCaNa K Ca Yasuoka et al., m 78.35m Ca
10 Columnar section Lithofacies Conglomerate Fine-grained tuff Coarse-grained tuff Unit4 Fine-grained tuff Unit3 Lapilli tuff Unit2 Fine-grained tuff Unit1 Coarse-grained tuff thickness m Ss/Ms Alt. 20+ softness high low Sliding surface Sliding surface Sliding surface m m MPa " MPa C L C M 10 6 m km 82 7 STOP m 7STOP11/25,
11 Slope moving area F1 F2 South Unit North Unit Moving body inner fault Bedding structure 5 N25E Subsidence part of moving body moving body Non subsidence part of Slope moving area? 190? 210 >4m >7m 6m 5m Nishihata R. 4m 3m Cross section 2m Lower graben 2m <2m Upper graben 190 Separating scarp >7m 4m 5m6m 3m >7m Main-moving domain >7m >7m? Nishihata R m Slope moving direction Scarp Collapse Open crack Fault Graben >7m Isopach of tuffaceous mudstone bed m F2 7m 121
12 190 : bore hole Lower graben Upper graben Separating scarp tfmd tfmd m Mudstone Sandstone mudstone Tuffaceous Tuffaceous sandstone Tuff Landslide debris 9 4 1m 9 10cm 10cm m cm cm
13 STOP m 10 STOP2 1/25, km 10 4,110ppm C 30m 4m
14 STOP3 STOP m 11 STOP3 STOP4 1/ 25, km ( 506 ) 2km BOB&MOM 500 1, m 30m 124
15 250 Yokawa R LEGEND landslide body contour of ground surface contour of bottom of tuff beds bore hole moving direction pond dip m m 50 80cm 1 5cm (
16 Yokawa R LEGEND contour of terrace deposit ground surface conglomerate landslide body tuff moving direction alternation of sandstone and mudstone pond 0 500m A 250(m) 100 B 250(m) B A C 7-11 C D 7-10 D E 5-6 F G A 250(m) 100 H:V=2:1 E 8-2 F G B 250(m) A - LEGEND terrace deposits conglomerate tuff alternation of sandstone and mudstone bore hole sliding surface A geological cross section 100 C 250(m) C 250(m) H:V=2:1 100 T7-3 T B 7-11 A 8-6 Yokawa R. B A C D H:V=2:1 100 D 250(m) T53-3 T7-4 B 7-10 A D 250(m) C 0 500m D A B H:V=2:
17 STOP m 15 STOP5 1/25,000 (m) 2 0 fine-grained tuff coarse-grained tuff sandstone conglomerate
18 P.10 P.9 P.8 P.7 P.6 P.5 P.0 P.1 P m P.3 P.4 LEGEND fine-grained tuff coarse-grained tuff sandstone conglomerate 10(m) (m) 5 0 Line 0 Line Line Line Line Line Line Line Line Line 10(m) (m) , 0, 39, , 1987,,, no. 6, , 1976,,, 293p, 1983,,, 206p, 1971, 5 1, 58p, 1983, (5 1 ),, 115p Huzita, K., Kasama, T., Hirano, M., Shinoda, T. and Yamashita, M., 1971, Geology and geomorphology of the Rokko area, Kinki district, Japan with special reference to Quaternary tectonics Jour. Geosci. Osaka City Univ., 14, , 1961, 17 1, 171p, 1986,, no. 26, 1 109, 0, 39,
19 uniaxial compressive strength (MPa) cm rainfall LEGEND fine-grained tuff coarse-grained tuff sandstone conglomerate concretion rill spring columnar section cross section frontal sketch 18, 3, Sr, 109, Imaoka, T., Murakami, N., Matsumoto, T. and Yamasaki, H., 1988, Paleogene cauldrons in the western San-in district, Southwest JapanJour. Fac. Liberal Arts, Yamaguchi Univ., 22, 41 75, 1999,, no. 53, , 1994,, no. 20, 3 57, 0, 39, , 4, 43, , 1999, lateral spreads 38, , 1993, 32, 79 82, 3,, no. 4, 69 75, 2,, 56, , 4, 15 5, 0, 39, , 1987, 16, 138p, 2, 20 1,, 1991,, 129
20 , 97, , 3, 15, 81 86, 3, 15, , 1973,, no. 9, , 0, 39, , 4a, 43, , 4b, 43, , 1999, FT, 53, , 1991,, 97, , 1988, (5 1 ),, 89p, 1996,, 102, 73 83, 1994,,, 100, , 1998,, 9, 9 18, 1938,, 45, , 3,, 112, 35 49, 1, 2, 55, , 1,,, 145p Yasuoka, T., Kitagawa, R., Takeno, S. and Yokoyama, S., 1995, Mineralogical characteristics of smectite from the landslide area in the Neogene Kobe group, southwest JapanJour. Sci. Hiroshima Univ., Ser. C, 10, , 3, 16, 37 56, 0, 39, , 1994,, no. 7,
21 131
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