The relationship between kinematics and fault geometry for surface coseismic ruptures on across-strike faults: New observations of slip vectors and displacements along the Pisia and Skinos faults from the 1981 Eastern Gulf of Corinth, Greece earthquakes

IF 2.6 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Sam Mitchell , Gerald P. Roberts , Joanna P. Faure Walker , Francesco Iezzi , Claudia Sgambato , Jennifer Robertson , Zoë K. Mildon , Athanassios Ganas , Ioannis D. Papanikolaou , Elias J. Rugen
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Abstract

The relationships between kinematics and fault geometry for the coseismic ruptures from the 24th and February 25, 1981 earthquake sequence in the eastern Gulf of Corinth (Ms 6.7 and 6.4) are analysed. The two earthquakes ruptured faults located across strike rather than along strike as typifies other earthquake sequences. In detail, surface ruptures formed on the sub-parallel Pisia and Skinos Faults, with an 8 km along-strike overlap zone, separated across strike by < 2 km. The largest coseismic offsets occurred in the overlap zone. The 41-year-old ruptures are still well preserved as bedrock fault plane lichen-free stripes and colluvial ruptures, allowing detailed structural mapping at 213 rupture localities. A comparison between our measurements and Jackson et al. (1982) showed no overall consistent signal of post-seismic slip as some of our measurements were greater and some smaller than those recorded in 1981. The ruptures produced a single maximum asymmetric profile (Pisia: maximum throw of 223 cm) and a double maxima profile (Skinos: maximum throw of 109 cm and 130 cm). The shapes of the profiles differed in previous earthquakes on these faults, as evidenced by an older lichen-free stripe, implying non-characteristic earthquakes. Summing the two overlapping throw profiles across-strike reveals a single maximum symmetric bell-like profile. Using the above observations on coseismic offsets, kinematic information, and the geometry of faults, a rupture scenario has been proposed in terms of fault bends and corrugation orientations which suggests that parts of each fault may have ruptured in each earthquake.

跨断层表面同震断裂的运动学和断层几何学之间的关系:从 1981 年希腊东科林斯湾地震中对皮西亚断层和斯基诺斯断层沿线的滑移矢量和位移进行的新观察
本文分析了 1981 年 2 月 24 日和 25 日科林斯湾东部地震序列(Ms 6.7 和 6.4)中共震断裂的运动学和断层几何学之间的关系。这两次地震造成断层横向断裂,而不是像其他地震序列那样沿走向断裂。具体而言,地表断裂形成于次平行的皮西亚断层和斯基诺斯断层,沿走向重叠区长达 8 千米,跨走向相距 2 千米。最大的同震偏移发生在重叠区。已有 41 年历史的断裂仍完好地保存着基岩断层面无地衣条纹和冲积断裂,可在 213 个断裂地点绘制详细的结构图。将我们的测量结果与 Jackson 等人(1982 年)的测量结果进行比较后发现,震后滑动的总体信号并不一致,因为与 1981 年的测量结果相比,我们的测量结果有的更大,有的更小。断裂产生了单个最大不对称剖面(皮西亚:最大滑移量为 223 厘米)和双最大剖面(斯基诺斯:最大滑移量为 109 厘米和 130 厘米)。剖面的形状与这些断层上以前发生的地震不同,有一条较早的无地衣条纹为证,这意味着是非特征性地震。将两个重叠的抛掷剖面横断面相加,可以得到一个最大的对称钟形剖面。根据上述对同震偏移、运动学信息和断层几何形状的观察,从断层弯曲和波纹方向的角度提出了一种断裂方案,表明每次地震中都可能有部分断层断裂。
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来源期刊
Journal of Structural Geology
Journal of Structural Geology 地学-地球科学综合
CiteScore
6.00
自引率
19.40%
发文量
192
审稿时长
15.7 weeks
期刊介绍: The Journal of Structural Geology publishes process-oriented investigations about structural geology using appropriate combinations of analog and digital field data, seismic reflection data, satellite-derived data, geometric analysis, kinematic analysis, laboratory experiments, computer visualizations, and analogue or numerical modelling on all scales. Contributions are encouraged to draw perspectives from rheology, rock mechanics, geophysics,metamorphism, sedimentology, petroleum geology, economic geology, geodynamics, planetary geology, tectonics and neotectonics to provide a more powerful understanding of deformation processes and systems. Given the visual nature of the discipline, supplementary materials that portray the data and analysis in 3-D or quasi 3-D manners, including the use of videos, and/or graphical abstracts can significantly strengthen the impact of contributions.
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