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Evolving deformation along a transform plate boundary: Example from the Dead Sea Fault in northern Israel

机译:沿转换板块边界的演化变形:以以色列北部死海断裂为例

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[1] We analyzed geologic structures adjacent to the Dead Sea Fault (DSF) along the margins of the Sinai and Arabian plates in northern Israel in order to investigate the style and sequence of deformation associated with a transform plate boundary. The field area, located between the Hula basin in northern Israel and the Lebanese restraining bend in southern Lebanon, is divided into distinct structural blocks by a series of distributed faults that comprise this approximately N-S trending section of the DSF. Cretaceous and Tertiary rocks within and adjacent to the structural blocks are folded into broad anticlines and synclines, with more intense localized shortening manifested by tight folds and thrust duplexes. Kinematic analyses of folds, faults, and veins provide evidence for two directions of regional shortening: (1) NW-SE shortening responsible for the formation of NE-SW trending fold axes and left-lateral strike-slip motion along N-S trending faults and (2) E-W shortening as indicated by N-S trending fold axes, N-S striking thrust faults, and extensional calcite-filled veins that strike E-W. Crosscutting relations and U-Th ages of the vein material suggest that the E-W phase of transform-normal shortening represents the most recent and presently active phase of deformation. The structural analysis provides evidence for the transition from an early (Miocene-lower Pliocene) phase of pure strike-slip motion to a late (Pleistocene to Recent) phase of convergent strike slip. The latter phase is characterized by strain partitioning, which is manifested by discrete left-lateral strike-slip motion across weak N-S faults and the development of a fold-thrust belt in response to transform-normal shortening. Analogous to the strain partitioning observed in southern California, we suggest that blind thrust faults adjacent to the DSF in the study area may pose a seismic risk to populations in northern Israel and southern Lebanon.
机译:[1]我们分析了以色列北部西奈半岛和阿拉伯板块边缘与死海断层(DSF)相邻的地质结构,以研究与转换板块边界相关的变形样式和序列。油田区位于以色列北部的呼啦盆地与黎巴嫩南部的黎巴嫩束缚弯道之间,由一系列分布的断层划分为不同的构造块,这些断层构成了DSF的这一近似N-S趋势段。在结构块内和附近的白垩纪和第三纪岩石被折叠成宽的背斜和向斜,通过紧密的褶皱和逆冲双重作用表现出更强烈的局部缩短。褶皱,断层和静脉的运动学分析为区域缩短的两个方向提供了证据:(1)NW-SE缩短负责形成NE-SW趋势褶皱轴和沿着NS趋势断裂的左旋走滑运动,并且( 2)EW缩短,如NS趋势褶皱轴,NS冲断冲断层和撞击EW的方解石充填伸展脉。横切关系和静脉材料的U-Th年龄表明,变换法线缩短的E-W相代表了变形的最新且当前处于活动状态。结构分析为从纯走滑运动的早期(中新世-下新世)阶段过渡到收敛的走滑的晚期(更新世到最近)阶段提供了证据。后一阶段的特征是应变分配,这表现为横跨弱N-S断层的离散的左走向走滑运动和响应于变换法线缩短的褶皱-冲断带的发展。与在加利福尼亚南部观察到的应变分配类似,我们建议研究区域中与DSF相邻的盲冲断层可能会对以色列北部和黎巴嫩南部的居民构成地震危险。

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  • 来源
    《Tectonics》 |2009年第5期|TC5005.1-TC5005.19|共19页
  • 作者单位

    Geological Survey of Israel, 30 Malkhc Israel Street, Jerusalem 95501, Israel;

    Department of Earth Sciences, Florida International University, University Park, P.O. Box 344,11200 SW 8th Street, Miami, FL 33199, USA;

    Geological Survey of Israel, 30 Malkhc Israel Street, Jerusalem 95501, Israel;

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