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Active crustal deformation and rotations in the southwestern Balkans from continuous GPS measurements

机译:来自连续GPS测量的Balkans西南部的主动地壳变形和旋转

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The western limb of the Hellenic Arc defines the boundary of a large intracontinental active extensional domain covering the Aegean and the southwestern part of the Balkan peninsula. Along this boundary a transition from collision in the north to subduction in the south is associated with post-Miocene clockwise rotations of similar to 50 degrees. We present a new GPS velocity field that, with new permanent station velocities in Albania, Bulgaria, Kosovo, Montenegro, and Northern Macedonia, provides insights into previously unresolved aspects on the large-scale dynamics of continental lithosphere and on the relation between long and short-term kinematics. In particular we address (1) the kinematic description of the collision/subduction transition, (2) the relation between long-term finite rotations with geodetically-measured instantaneous rotations, (3) the forces maintaining and resisting the deformation of the extensional domain and (4) the extent of its northern boundary. We use the analogy of rigid elongate inclusions in the velocity field to predict the senses and approximate rates of rotation of crustal blocks in the deforming continental region. Across the collision/subduction transition zone a large rotational pattern in the velocity field is found whose spatial pattern and sense of rotation is compatible with the observed paleomagnetic rotations through the occurrence of fault-bounded block rotations. Geodetic observations show that clockwise vertical axis rotation of the western limb of the Hellenic margin is active today, with distribution and rates that are essentially the same as that defined by the paleomagnetic data for the last 5 Ma. The maximum rates of the rotational component of the velocity field is found along the wide arrangement of fault-bounded blocks in central Greece that accomodate the NE-SW dextral shear transferred from the northern Aegan trough. The northern limit of the rotating margin defines a hinge (Scutari-Pec transverse zone) that has remained stationary throughout the Middle Miocene (relative to the upper plate of the collision/subduction system) with important implications for the distribution of strength of the western margin of the Hellenic Arc. The distribution and style of deformation along the western boundary of the extensional domain is controlled by the relation between gravitational forces, driving the flow of crustal material towards the low-lying adjacent regions sea floor, and heterogeneous resistive forces along the collision/subduction boundary. (c) 2020 Elsevier B.V. All rights reserved.
机译:Hellenic Arc的西肢定义了覆盖Aegean和Balkan半岛的西南部的大型内部主动延伸域的边界。沿着这个边界,南方碰撞的过渡到南部俯冲与后部后顺时针旋转的相似与50度相似。我们提出了一个新的GPS速度领域,在阿尔巴尼亚,保加利亚,科索沃,黑山和北马其顿的新永久站速度,为陆地岩石圈的大规模动态和长而短暂的关系提供了进入以前未解决的方面的见解。 -term运动学。特别是我们地址(1)碰撞/俯冲转换的运动学描述,(2)长期有限旋转与地理测量瞬时旋转之间的关系,(3)维持和抵抗延伸域变形的力和(4)其北边界的程度。我们使用速度场中的刚性细长夹杂物的类比,以预测变形大陆区域的地壳块旋转的感官和近似速率。在碰撞/郊区转换区域横跨速度场中的大旋转模式,其空间图案和旋转感与通过发生故障有界块旋转的观察到的古磁旋转兼容。大地测量观测表明,热带边缘西肢的顺时针垂直轴旋转今天是活跃的,分配和速率基本上与过去5 mA的古磁性数据定义的分配和速率。速度场的旋转分量的旋转分量的最大速率沿着从北极北部转移的Ne-SW右旋剪切容纳的中央希腊的故障界块的广泛布置。旋转边缘的北极极限定义了铰链(柯卡里-PEC横区),其在整个中间中间(相对于碰撞/俯冲系统的上板)中保持静止,并对西方利润率的强度分布的重要意义希腊弧。沿着延伸域的西部边界的变形的分布和风格由重力之间的关系控制,驱动地壳材料朝向低位相邻区域海底的流动,以及沿着碰撞/俯冲边界的异质阻力。 (c)2020 Elsevier B.v.保留所有权利。

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