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Comparison of structural features of the fault zone developed at different protoliths: crystalline rocks and mudrocks

机译:比较不同原岩发育的断层带的结构特征:结晶岩和泥岩

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摘要

We investigated the mesoscopic and microscopic structural features of the Keumwang fault zone, Korea, to determine the effect of different protoliths (crystalline granitic gneiss and mudrock) on fault zone structure including discrete shear surfaces, shear bands, foliation, porphyroclasts and calcite veins. Overall, in crystalline rock, the shear deformation tends to be localized to a fault core or several fault gouge-dominated layers within the fault zone. The cataclastic flow appears to become stronger toward the fault core. Most of the shear deformation appears to be partitioned between slip on discrete shear surfaces and shear bands, and cataclastic flow, including syntectonic alteration in the fine-grained matrix of fault rocks. In contrast, within mudrocks, shear deformation tends to be relatively uniformly distributed within the entire fault zone. Shearing generates continuous S-foliations throughout the whole fault zone. Most of the shearing is accommodated by slip along these foliations and on discrete shear surfaces distributed within the entire fault zone.
机译:我们调查了韩国Keumwang断层带的介观和微观结构特征,以确定不同原生石(结晶花岗岩片麻岩和泥岩)对断层带结构(包括离散的剪切面,剪切带,叶面,卟啉岩和方解石脉)的影响。总体而言,在结晶岩中,剪切变形倾向于局限在一个断层岩心或断层带内几个断层泥主导的层中。碎裂流向断层岩心似乎越来越强。大部分的剪切变形似乎是在离散的剪切面和剪切带上的滑动之间,以及碎裂流,包括在断层岩石的细粒基质中的构造变化,之间进行的。相反,在泥岩中,剪切变形倾向于在整个断层带内相对均匀地分布。剪切作用在整个断层带中产生连续的S叶。大部分剪切作用是通过沿着这些叶面的滑移以及分布在整个断层带内的离散剪切面上的滑动来进行的。

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