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The Miocene-to-Present Kinematic Evolution of the Eastern Mediterranean and Middle East and Its Implications for Dynamics

机译:东地中海和中东地区从中新世到目前的运动学演化及其动力学意义

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摘要

The present kinematics in the eastern Mediterranean andMiddle East is now well constrained by GPS measurements and dominated by a circular counterclockwise motion. While Arabia rotates rigidly, the rotational velocities increase from the Levant to Aegea, causing extension in western Anatolia. Weplace the present pattern in light of the post–Middle Miocene geological history and propose that in addition to the effects of the Hellenic subduction and Zagros collision-subduction zones on driving the surface motion, an underlying asthenospheric flow is also required. This counterclockwise toroidal flow is expected to exist around the eastern edge of the African slab owing to subduction rollback, and it helps explain the initiation of theNorth Anatolia Fault, the extrusion and uplift of Anatolia, and the Mid-Miocene to Recent volcanism in eastern Anatolia. The Afar plume had a similar effect on the acceleration of Arabia at 40 Mya.
机译:目前,地中海东部和中东的运动学受到GPS测量的严格限制,并以逆时针圆形运动为主导。当阿拉伯刚性旋转时,从黎凡特到爱琴海的旋转速度增加,从而导致安那托利亚西部地区的扩张。根据中新世中期后的地质历史,将目前的模式进行了研究,并提出,除了希腊俯冲带和Zagros碰撞俯冲带对驱动地表运动的影响之外,还需要潜在的软流圈流动。由于俯冲回滚,这种逆时针环形流动预计将存在于非洲板块的东部边缘,它有助于解释北安那托利亚断层的形成,安那托利亚的挤压和隆升以及中安新世至安那托利亚东部最近的火山活动。阿法尔羽状体对40 Mya处的阿拉伯加速有类似作用。

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