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Retrodeforming the Arabia-Eurasia collision zone: Age of collision versus magnitude of continental subduction

机译:改造阿拉伯-欧亚大陆碰撞带:碰撞年龄与大陆俯冲幅度

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The Arabia-Eurasia collision has been linked to global cooling, the slowing of Africa, Mediterranean extension, the rifting of the Red Sea, an increase in exhumation and sedimentation on the Eurasian plate, and the slowing and deformation of the Arabian plate. Collision age estimates range from the Late Cretaceous to Pliocene, with most estimates between 35 and 20 Ma. We assess the consequences of these collision ages on the magnitude and location of continental consumption by compiling all documented shortening within the region, and integrating this with plate kinematic reconstructions. Shortening estimates across the orogen allow for ~350 km of Neogene upper crustal contraction, necessitating collision by 20 Ma. A 35 Ma collision requires additional subduction of ~400-600 km of Arabian continental crust. Using the Oman ophiolite as an analogue, ophiolitic fragments preserved along the Zagros suture zone permit ~180 km of subduction of the Arabian continental margin plus overlying ophiolites. Wholesale subduction of this more dense continental margin plus ophiolites would reconstruct ~400-500 km of postcollisional Arabia-Eurasia convergence, consistent with a ca. 27 Ma initial collision age. This younger Arabia-Eurasia collision suggests a noncollisional mechanism for the slowing of Africa, and associated extension.
机译:阿拉伯-欧亚大陆的碰撞与全球降温,非洲的变慢,地中海的扩张,红海的裂谷,欧亚板块上的发掘和沉积增加以及阿拉伯板块的减慢和变形有关。碰撞年龄的估计范围从白垩纪晚期到上新世,大多数估计在35至20 Ma之间。我们通过汇编该地区内所有已记录的缩短段,并将其与板块运动学重建相结合,来评估这些碰撞年龄对大陆消耗量和位置的影响。缩短整个造山带的估算时间可以使新近纪上地壳收缩约350 km,这需要20 Ma的碰撞。 35 Ma的碰撞需要额外俯冲约400-600 km的阿拉伯大陆壳。使用阿曼蛇绿岩作为类似物,沿Zagros缝合带保存的蛇绿岩碎片允许阿拉伯大陆边缘加上上覆蛇绿岩俯冲约180 km。大规模俯冲这种较密集的大陆边缘加上蛇绿岩将重建约400-500 km的碰撞后阿拉伯-欧亚大陆交汇点,与大约初始碰撞年龄为27 Ma。这场较年轻的阿拉伯-欧亚大陆碰撞表明,非洲减慢的非冲突机制及其相关的扩展。

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