首页> 外文期刊>Journal of seismology >Fault zones ruptured during the early 2014 Cephalonia Island (Ionian Sea, Western Greece) earthquakes (January 26 and February 3, Mw 6.0) based on the associated co-seismic surface ruptures
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Fault zones ruptured during the early 2014 Cephalonia Island (Ionian Sea, Western Greece) earthquakes (January 26 and February 3, Mw 6.0) based on the associated co-seismic surface ruptures

机译:基于相关的同震表面破裂,在2014年凯法利尼亚岛(希腊西部爱奥尼亚海)地震(1月26日和2月3日,Mw 6.0)期间,断裂带破裂。

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摘要

The early 2014 Cephalonia Island (Ionian Sea, Western Greece) earthquake sequence comprised two main shocks with almost the same magnitude (moment magnitude (Mw) 6.0) occurring successively within a short time (January 26 and February 3) and space (Paliki peninsula in Western Cephalonia) interval. Each earthquake was induced by the rupture of a different pre-existing onshore active fault zone and produced different co-seismic surface rupture zones. Co-seismic surface rupture structures were predominantly strike-slip-related structures including V-shaped conjugate surface ruptures, dextral and sinistral strike-slip surface ruptures, restraining and releasing bends, Riedel structures (R, R', P, T), small-scale bookshelf faulting, and flower structures. An extensional component was present across surface rupture zones resulting in ground openings (sinkholes), small-scale grabens, and co-seismic dip-slip (normal) displacements. A compressional component was also present across surface rupture zones resulting in co-seismic dip-slip (reverse) displacements. From the comparison of our field geological observations with already published surface deformation measurements by DInSAR Interferometry, it is concluded that there is a strong correlation among the surface rupture zones, the ruptured active fault zones, and the detected displacement discontinuities in Paliki peninsula.
机译:2014年初的凯法利尼亚岛(希腊西部爱奥尼亚海)地震序列包括两次主震,震级几乎相同(矩震级(Mw)6.0),并在短时间内(1月26日和2月3日)连续发生,并发生了空间地震(帕利基半岛)。西凯法利尼亚岛)间隔。每次地震都是由不同的预先存在的陆上活动断层带的破裂引起的,并产生了不同的同震地表破裂带。同震表面破裂结构主要是与走滑有关的结构,包括V形共轭表面破裂,右旋和左弦走滑表面破裂,约束和释放弯曲,Riedel结构(R,R',P,T),小规模的书架断层和花的结构。在地表破裂带上存在一个伸展分量,导致地面开口(水坑),小范围grab陷和同震倾滑(正常)位移。在整个地表破裂带上也存在压缩分量,导致同震倾滑(反向)位移。从我们的现场地质观测结果与DInSAR干涉仪已发表的表面变形测量结果的比较中,可以得出结论,在Paliki半岛,地表破裂带,活动断裂带破裂与位移不连续性之间存在很强的相关性。

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