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根据变形岩石的显微构造特征探讨断层的活动性
引用本文:何永年,林传勇,史兰斌.根据变形岩石的显微构造特征探讨断层的活动性[J].地震地质,1984,6(4):39.
作者姓名:何永年  林传勇  史兰斌
作者单位:国家地震局地质研究所 (何永年,林传勇),国家地震局地质研究所(史兰斌)
摘    要:本文是通过一条断层及其围岩物质的显微构造的对比研究来探讨断层活动性的尝试。配合热释光年代学方法的测定结果,表明该断层自更新世以来曾发生过多次新的活动,主断裂形成时的古应力大约为700巴左右

关 键 词:双晶纹  方解石脉  显微构造特征  变形岩石  断层带  断层泥  中方  差异应力  空间指数  玄武岩

THE ACTIVITY OF FAULT ZONE INFERRED FROM MICROSTRUCTURAL STUDY OF DEFORMED ROCKS
Abstract:The neotectonic activity of a minor fault zone on the Southwest margin of Yangzi platform has been studied based on the analysis and comparison of the microstructural features of deformed rocks within and outside the fault zone.The fault developed in Permian Emei basalt, striking NE40-50*, dipping toward Southeast at an angle of 70-80*, with a total length of 250m and horizontal displacement of 1.5m.Within the fault developed a zone 3-30cm in width consisting of fault gouge and fractured lenticular rock fragments, which along with the country rocks were cut by the late calcite veins. The samples were collected from the veins within the fault and the veins within the country rocks of different distance from the fault.The optical microscopic observation has shown that almost all of the calcite posseses twin lamellae, while U-stage measurement has shown that the space index of twin lamellae varies with the increasing distance from the fault. The space index is highest in the fault (50/mm), and decreases rapidly with the increasing distance from the fault (10/mm in the sample 20m away from the fault).The differential stress during the deformation process has been estimated from the developement degree of twin lamellae by using Jamison and Spang' s method. The Result is in good agreement with that estimated from dynamically recrystallized grain-size. It is shown that the stress within the fault(700 bars) is much higher than that outside the fault(300 bars).According to thermoluminenscence dating the calcite veins were formed in Pleisto-cence. It is proposed that after Pleistocene there would be more than one active period of the fault. The stress of the main period was up to 700 bars. The strain and stress of the rocks within the fault during the faulting process were significantly greater than those in the rocks outside the fault
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