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Active tectonics and late Cenozoic strain distribution in central and eastern Iran

机译:伊朗中部和东部的活跃构造和晚新生代应变分布

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摘要

Right-lateral shear between central Iran and Afghanistan is accommodated on N-S right-lateral strike-slip faults surrounding the aseismic Dasht-e-Lut. North of ∼3°N, the right-lateral shear is accommodated on left-lateral faults that rotate clockwise about vertical axes. Little is known of the late Tertiary and younger offsets and slip rates on the active fault systems, results that are important for understanding the regional tectonics. We use observations from satellite imagery to identify displaced geological and geomorphological markers which we use in conjunction with the overall morphology and orientation of the active fault systems to estimate the total cumulative right-lateral shear. Estimates of cumulative fault movements from offset features and inferred vertical axis rotation of fault-bounded blocks suggest that the late Cenozoic strain is concentrated toward the eastern margin of Iran, along the Sistan shear zone, where bedrock offsets of at least 70 km are observed across the active faults. The geomorphology of the Deh Shir, Anar, and Great Kavir strike-slip faults in central Iran suggest that although little shortening is accommodated across this region, they might still be active, and hence capable of producing earthquakes. Present-day activity on these faults in central Iran would not be expected from distributions of instrumental and historical earthquakes. Although speculative, the late Tertiary strain distribution described in this paper is consistent with what we know of the present-day rates of shear in eastern Iran and provides a framework to which later, more detailed, work can be added. Copyright 2004 by the American Geophysical Union.
机译:伊朗中部和阿富汗之间的右向剪切作用是围绕着抗震达什特-e-卢特岛的N-S向右走滑断层。在〜3°N以北,右旋剪力作用于绕垂直轴顺时针旋转的左旋断层。对于活动断裂系统的第三纪晚期和年轻的偏移和滑移率知之甚少,这一结果对于理解区域构造具有重要意义。我们使用来自卫星图像的观测结果来确定位移的地质和地貌标记,并结合活动断层系统的整体形态和方向来估计总的累计右向剪切力。通过偏移特征和断层边界块的推断垂直轴旋转估算的累积断层运动表明,新生代晚期应变集中在伊朗的东缘,沿着锡斯坦剪切带,在该断裂带上观察到至少70 km的基岩偏移。活动故障。伊朗中部的Deh Shir,Anar和Great Kavir走滑断层的地貌表明,尽管该地区几乎没有缩短,但它们可能仍然活跃,因此能够产生地震。从仪器地震和历史地震的分布来看,当今伊朗中部这些断层的活动是无法预期的。尽管是推测性的,但本文中描述的第三纪晚期应变分布与我们对当今伊朗东部的当前剪切速率的认识是一致的,并提供了一个框架,可以在以后进行更详细的工作。美国地球物理联合会2004年版权所有。

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    Walker, R; Jackson, J;

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  • 年度 2004
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