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首页> 外文期刊>Bulletin of the Seismological Society of America >Meso- and Microstructural Analysis of Coseismic Shear Zone of the 1999 MW 7.6 Chi-Chi Earthquake, Taiwan
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Meso- and Microstructural Analysis of Coseismic Shear Zone of the 1999 MW 7.6 Chi-Chi Earthquake, Taiwan

机译:台湾1999年中集集聚7.6地震的同震剪切带的细观和微观结构分析

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摘要

The surface rupture of the 1999 Mw 7.6 Chi-Chi (Taiwan) earthquake was controlled primarily by the pre-existing Chelungpu fault zone, which is distributed in a wide zone of up to 60 m, although the main coseismic slip is localized in a narrow shear zone of <0.3 cm. The Chelungpu fault zone is composed of cataclasite, fault breccia, and gouge zones that are well observed in both the fault outcrops and the drill cores taken throughout the fault zone. The foliations developed in the cataclasite and fault breccia zones are oriented parallel to that of the fault gouge zone where the main coseismic slip occurred. The structural analyses of the shear zone and fault rocks show that the Chelungpu fault zone has slipped as a thrust fault with a significant left-lateral slip component since its formation in the Pleistocene. This oblique thrust motion is caused by the southeast–northwest oblique convergence between the Philippine Sea plate and the Eurasian plate.
机译:台湾1999年 w 7.6集集地震 的地表破裂主要由已存在的切龙普断裂 带控制。尽管 主要同震滑动分布在<0.3 cm的狭窄剪切带 中,但其分布范围最大为60 m。 Chelungpu断层带由白云母, 角砾岩和在整个断层露头和贯穿整个断层的钻芯中均观察到的断层带组成。 / sup>区域。裂陷区和断裂 角砾岩带中发育的叶面与发生同震滑动的断层泥 区平行。剪切带和断层岩石的结构 分析表明,切隆普 断层带已作为滑动断层滑移,左旋 滑移明显自从它在更新世形成以来就一直存在。这种 斜推力运动是由菲律宾海板块和 欧亚板块之间的东南向西北 倾斜交汇引起的。

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