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Tectonic paleostress fields in the southwestern part of Jordan: New insights from the fault slip data in the southeastern flank of the Dead Sea Fault Zone

机译:约旦西南部的构造古应力场:死海断层带东南侧面断层滑动数据的新见解

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摘要

A new approach for paleostress analysis, using the nine-dimensional space fault slip inversion method, was performed in the southeastern flank of the Jordan-Dead Sea Fault. Five major tectonic episodes with different kinematics were successfully detected from the inversion of a new fault slip data, which thereby caused reactivation of inherited crustal structures and established new ones. These episodes prevailed since Late Cretaceous times, and their chronological constraints were established essentially from the stratigraphic ages of the affected rocks and the crosscutting relationships of successive striae locally observed on the fault planes. During the Late Cretaceous to late Eocene, the area was under a compressional/strike-slip stress regime with a similar to E-W trending sigma(1). At Oligocene, a strike-slip stress regime with NW-SE striking s1 occurred. Both compression regimes correspond to the so-called Syrian Arc Deformation that gave rise to distinctive folds in Jordan and its surrounding areas. An extension with similar to N-S to NE-SW trending sigma(3) followed the late Oligocene compression event and took place during Miocene time, most probably linked to the opening of the Red Sea-Suez Rift. Late Cenozoic tectonics show the occurrence of two successive compressions, NW-SE then both NE-SW and similar to N-S, which generally reflect a continental collisional setting between the Arabian and Eurasian plates.
机译:在约旦-死海断层的东南侧面,采用了九维空间断层滑动反演方法,进行了一种新的古应力分析方法。从新的断层滑动数据反演中成功地发现了五个具有不同运动学的主要构造事件,从而引起了继承的地壳结构的重新活化并建立了新的构造。这些事件自白垩纪晚期开始盛行,其时间上的限制基本上是由受影响岩石的地层年龄和在断层平面上局部观察到的连续纹的横切关系所建立的。在白垩纪晚期至始新世晚期,该地区处于受压/走滑应力状态,与E-W趋势sigma(1)相似。在渐新世,出现了以NW-SE冲击s1的走滑应力状态。两种压缩方式都与所谓的叙利亚弧形变形相对应,该变形在约旦及其周围地区产生了独特的褶皱。渐新世压缩事件发生后,类似于N-S向NE-SW趋势sigma(3)扩展,发生在中新世时期,很可能与红海-苏伊士裂谷的开启有关。晚新生代构造显示出发生了两次连续的压缩,即NW-SE,然后是NE-SW,也类似于N-S,通常反映了阿拉伯板块与欧亚板块之间的大陆碰撞背景。

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  • 来源
    《Tectonics》 |2015年第10期|1863-1891|共29页
  • 作者单位

    Masaryk Univ, Dept Geol Sci, Brno, Czech Republic;

    Masaryk Univ, Dept Geol Sci, Brno, Czech Republic;

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