首页> 外文期刊>Journal of structural geology >Anisotropy of magnetic susceptibility and P-wave velocity in core samples from the Taiwan Chelungpu-Fault Drilling Project (TCDP)
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Anisotropy of magnetic susceptibility and P-wave velocity in core samples from the Taiwan Chelungpu-Fault Drilling Project (TCDP)

机译:台湾Chelungpu-Fault钻探项目(TCDP)岩心样品中磁化率和P波速度的各向异性

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The anisotropy of magnetic susceptibility (AMS) and anisotropy of P-wave velocity (APV) were characterized in core samples retrieved from the TCDP Hole A at depths ranging from 600m to 1400m, thus cutting across the thrust fault that ruptured during the 1999 Chi-chi earthquake. Our data show that the AMS was similar for all the samples regardless of the lithologic contrasts, with a magnetic fabric characteristic of weakly deformed sedimentary rocks that had undergone layer parallel shortening. This robust observation applies to both the siltstones and sandstones at all depths investigated. In contrast the APV data reflect fundamental differences between the elastic fabrics in the two facies. While APV of the siltstone samples is controlled by a preferred orientation of the matrix minerals, the APV of the sandstones is greatly influenced by microcrack porosity with a preferred orientation parallel to the maximum principal direction of paleostress and tectonic deformation. These AMS and APV data obtained in TCDP Hole A at locations not directly impacted by the coseismic rupture provide a first order petrofabric framework for the characterization of hydromechanical anisotropy in the Chelungpu fault system.
机译:在从TCDP孔A取回的深度为600m至1400m的岩心样本中,表征了磁化率各向异性(AMS)和P波速度各向异性(APV),从而跨越了1999年Chi-志地震。我们的数据表明,无论岩性如何,所有样品的AMS都相似,其磁织物具有经过层平行缩短的弱变形沉积岩的特征。这一稳健的观察结果适用于所有调查深度的粉砂岩和砂岩。相反,APV数据反映了两个相中弹性织物之间的根本差异。粉砂岩样品的APV受基体矿物的优选取向控制,而砂岩的APV受微裂纹孔隙度的影响很大,其最佳取向平行于古应力和构造变形的最大主方向。在TCDP孔A中不受同震破裂直接影响的位置获得的这些AMS和APV数据为表征Chelungpu断层系统中的流体力学各向异性提供了一阶石油构造框架。

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