Spatial Distribution Characteristics of Illite Crystallinity and Rebound Hardness in the Mudstones of the Shimanto Belt and Kumano Group, Southern Kii Peninsula, Japan
Author:
Affiliation:
1. Geomechanics Lab., Graduate School of Integrated Basic Sciences, Nihon University
2. Geomechanics Lab., Dep. Earth and Environmental sciences, Nihon University
3. Fukada Geological Institute
4. J-power Design Co., Ltd.
Publisher
Japan Society of Engineering Geology
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjseg/63/2/63_42/_pdf
Reference18 articles.
1. 1)Frey, M. (1987):Very low-grade metamorphism of clastic sedimentary rocks, In Low temperature metamorphism (ed., Frey), Blackie, Glasgow and London, pp. 9–58.
2. 2)Kübler, B. (1968):Evaluation quantitative du métamorphisme par la cristallinité de I'illite, Bull. Cent. Rech. Pau-SNPA, 2, pp. 385–397.
3. 3)Awan, M. A. and Kimura, K. (1996):Thermal structure and uplift of the Cretaceous Shimanto Belt, Kii Peninsula, Southwest Japan: An illite crystallinity and illite b0 lattice spacing study, The Island Arc, Vol. 5, No. 1, pp. 69–88.
4. 4)原 英俊・木村克己(2000):イライト結晶度の測定誤差の評価:付加コンプレックスに適用する際の限界と問題点,地質学雑誌,Vol. 106, No. 4, pp.264–279.
5. 5)Fukuchi, R., Fujimoto, K., Kameda, J., Hamahashi, M., Yamaguchi, A., Kimura, G., Hamada, Y., Hashimoto, Y., Kitamura, Y., Saito, S. (2014):Changes in illite crystallinity within an ancient tectonic boundary thrust caused by thermal, mechanical, and hydrothermal effects: an example from the Nobeoka Thrust, southwest Japan, Earth, Planets and Space, Vol. 66, No.116, pp.1–12.
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