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首页> 外文期刊>Earth, planets and space: EPS >Structural evolution of the Nojima fault (Awaji Island, Japan) revisited from the GSJ drill hole at Hirabayashi
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Structural evolution of the Nojima fault (Awaji Island, Japan) revisited from the GSJ drill hole at Hirabayashi

机译:从平林的GSJ钻孔重新考察了野岛断裂(日本淡路岛)的结构演化

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摘要

Following the Hyogoken Nanbu earthquake (January 17, 1995, Mw=7.2), three drillholes were sunk through the Nojima Fault (Awaji Island, Japan). Textural and petrographic studies of the Geological Survey of Japan (GSJ) drill cores allow recognition of two deformation episodes. The first one is older than the deposition of the Middle to Late Eocene Kobe Group, corresponds to a left-lateral movement on the Nojima fault and is expressed by pseudotachylytes, kinking of biotite crystals in the low-strain rocks and an intense laumontite hydrothermal alteration. The second one displaces the basal unconformity of the Kobe group, corresponds to a right-lateral reverse displacement and is expressed at least by carbonate-filled hydraulic fractures and thin gouge zones. Different important deformation mechanisms are recorded by the fault rocks, but questions relating to the attribution of deformation and alteration features to one or other deformation episodes remain unresolved.
机译:兵库县南部地震(1995年1月17日,Mw = 7.2)之后,三个钻孔被钻进了野岛断裂(日本淡路岛)。日本地质调查局(GSJ)钻芯的组织学和岩石学研究可以识别两个变形事件。第一个年龄早于中新世以来的始新世神户群,对应于野岛断裂上的左旋运动,并表现为假速溶质,低应变岩石中黑云母晶体的扭结和强烈的月桂石热液蚀变。 。第二个位移了科比群的基底不整合面,对应于右旋向后位移,并至少以充填碳酸盐岩的水力压裂和薄切屑区表示。断层岩石记录了不同的重要变形机制,但是与变形和蚀变特征归因于一个或其他变形事件有关的问题仍未解决。

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