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Coseismic conjugate faulting structures produced by the 2016 M-w 7.1 Kumamoto earthquake, Japan

机译:日本2016年熊本M-w 7.1地震产生的同震共轭断裂构造

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Field investigations and analyses of airborne LiDAR data reveal that the 2016 M(w)7.1 Kumamoto earthquake produced a similar to 40-km-long surface rupture zone with a typical conjugate Riedel shearing fault structure along the pre-existing right-lateral strike-slip Hinagu-Futagawa Fault Zone (HFFZ). The conjugate Riedel shearing structure comprises two sets of coseismic shear fault zones that are oriented to NE-SW to ENE-WSW and WNW-ESE to E-W. The NE-SW to ENE-WSW-trending shear fault zone is characterized by R Riedel shear structures with right-lateral strike-slip displacement of up to 2.5 m, including left-stepping en echelon cracks (T-shear) and mole tracks (P-shear). In contrast, the WNW-ESE to E-W-trending shear fault zone is dominated by R' Riedel shear structures with left-lateral displacement of up to 1.3 m, including right-stepping en echelon tension cracks (T) and mole tracks (P), which are concentrated in a zone of < 10 m within individual rupture zones. Our findings demonstrate that the coseismic conjugate Riedel shear faulting is mainly controlled by the pre-existing active strike-slip faults of HFFZ under the present E-W compressive stress in the study area, associated with the ongoing penetration of the Philippine Sea Plate into the Eurasian Plate. (C) 2017 The Authors. Published by Elsevier Ltd.
机译:机载LiDAR数据的现场调查和分析显示,2016年的熊本M7.1地震产生了类似于40公里长的地表破裂带,并沿既有的右侧走滑带形成了典型的共轭Riedel剪切断裂构造Hinagu-Futagawa断裂带(HFFZ)。共轭Riedel剪切结构包括两组同震剪切断层带,它们的方向分别是NE-SW到ENE-WSW和WNW-ESE到E-W。 NE-SW到ENE-WSW趋势剪切断层带的特征是R Riedel剪切结构,其右走向走滑位移最大为2.5 m,包括左阶梯形裂缝(T型剪切)和mole槽( P剪切)。相比之下,从WNW-ESE到EW趋势的剪切断层带主要由R'Riedel剪切结构控制,其左向位移高达1.3 m,包括右阶梯形张力裂缝(T)和and槽(P) ,其集中在单个破裂带内的<10 m区域中。我们的研究结果表明,同震共轭Riedel剪切断裂主要受研究区域当前EW压应力作用下HFFZ先前存在的活动走滑断裂的控制,这与菲律宾海板块不断渗透到欧亚板块有关。 (C)2017作者。由Elsevier Ltd.发布

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