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Microcrack networks in granite affected by a fault zone: Visualization by confocal laser scanning microscopy

机译:受断层带影响的花岗岩中的微裂纹网络:通过共聚焦激光扫描显微镜观察

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Microcracks in the Cretaceous Ryoke-type granite in Japan were investigated by using deep drilling core samples collected in the Mizunami Underground Research Project of the Japan Nuclear Cycle Development Institute (JNC). The granite body suffered brittle deformation associated with Tertiary thrust movement. Based on core-scale and microscopic deformation features, the drill core from a depth of 300 to 700 m is divided into four domains, i.e. (A) undeformed granite, (B) granite intruded by cataclastic seams, (C) fractured granite in the fault damage zone, and (D) foliated cataclasite at the fault center. To characterize microcrack geometries in each domain, we employed the impregnation method using a low-viscous acrylic resin doped with fluorescent agents and captured the microcrack images by confocal laser scanning microscopy (CLSM). The CLSM image in the fault damage zone revealed anisotropic development of microcrack networks related to the fault movement. Both CLSM observation and porosity measurements reveal a drastic increase of micro-pores in the foliated cataclasite, possibly caused by fragmentation, and granulation and crack sealing in the fault zone.
机译:通过使用日本核循环发展研究所(JNC)的Mizunami地下研究项目中收集的深钻岩心样品,对日本白垩纪Ryoke型花岗岩中的微裂纹进行了研究。花岗岩体遭受三次推力运动的脆性变形。根据岩心尺度和微观形变特征,将钻心从300到700 m的深度分为四个区域,即(A)未变形的花岗岩,(B)碎裂缝侵入的花岗岩,(C)碎裂的花岗岩。断层破坏带,以及(D)断层中心的叶状白云母。为了表征每个区域中的微裂纹几何形状,我们使用了一种掺有荧光剂的低粘度丙烯酸树脂的浸渍方法,并通过共聚焦激光扫描显微镜(CLSM)捕获了微裂纹图像。断层破坏带中的CLSM图像揭示了与断层运动有关的微裂纹网络的各向异性发展。 CLSM观测和孔隙度测量均表明,叶状催化裂隙中微孔的急剧增加,可能是由碎裂以及断层带中的颗粒化和裂缝封闭引起的。

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