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首页> 外文期刊>Tectonics >Fractures and Subsidiary Faults Developed in the Active Strike-Slip Nojima Fault Zone, Japan, and Tectonic Implications
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Fractures and Subsidiary Faults Developed in the Active Strike-Slip Nojima Fault Zone, Japan, and Tectonic Implications

机译:在主动滑动Nojima故障区,日本和构造影响中开发的骨折和辅助故障

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摘要

The Nojima Fault Zone, on which the 1995 M-w 6.9 Kobe (Japan) earthquake occurred, is characterized by pulverized cataclastic rocks with numerous fractures and subsidiary faults. The fractures and subsidiary faults were observed in trench walls and using borehole televiewer (BHTV) images from boreholes NFD-1 (similar to 1,000-m depth) and AFD-1 (similar to 700-m depth), which were drilled through the Nojima Fault and its branch, the Asano Fault, respectively. Measurements show that the orientations of fractures and subsidiary faults in the two boreholes are concentrated at N10-70 degrees E, averaging N40 degrees E. In contrast, the orientations of fractures and subsidiary faults in the walls of a trench across the main surface trace of the Asano Fault are constrained to N0-40 degrees E, averaging N20 degrees E, parallel to the general trend of the Asano Fault but different with that observed in the deep holes at the Ogura site. Structural analysis shows that the fractures and subsidiary faults are mainly concentrated in Riedel Y and R shears of the right-lateral strike-slip Nojima Fault and its branch Asano Fault. Our findings demonstrate that the fractures and subsidiary faults within the Nojima Fault Zone were formed by dextral strike-slip shearing under the current ENE-WSW to E-W compressive regional tectonic stress field, related to ongoing subduction of the Pacific and Philippine Sea plates beneath the Japanese Islands.
机译:Nojima断层区,其中发生1995年M-W 6.9科比(日本)地震发生,其特点是具有众多骨折和辅助故障的粉碎性岩石。在沟槽墙上观察到骨折和辅助故障,并使用钻孔NFD-1(类似于1,000米深度)和AFD-1(类似于700米深度)的钻孔电视(BHTV)图像,通过NOJIMA钻孔故障及其分支,asano故障分别。测量表明,两个钻孔中的裂缝和辅助故障的方向集中在N10-70度E中,平均N40度E.相反,骨折的裂缝和辅助故障的方向在沟槽的主要表面迹线中的壁中ASANO故障被约束到N0-40度E,平均N20度E,平行于ASANO故障的一般趋势,但与Ogura站点的深孔观察到不同。结构分析表明,裂缝和辅助缺陷主要集中在RIEDEL Y和R右侧滑动NOJIMA故障的R剪切,及其分支asano故障。我们的调查结果表明,Nojima断层区内的骨折和辅助区由当前ENE-WSW下的右旋滑动剪切形成为EW压缩区域构造应力场,与日本太平洋和菲律宾海板的持续俯冲有关岛屿。

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