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Pre-collisional high pressure metamorphism and nappe tectonics at active continental margins: a numerical simulation

机译:活动大陆边缘碰撞前的高压变质作用和推覆构造:数值模拟

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The evolution of a subduction channel and orogenic wedge is simulated in 2D for an active continental margin, with P-T paths being displayed for selected markers. In our simulation, subduction erosion affects the active margin and a structural pattern develops within a few tens of millions of years, with four zones from the trench into the forearc: (i) an accretionary complex of low grade metamorphic sedimentary material, (ii) a wedge of nappes with alternating upper and lower crustal provenance, and minor interleaving of oceanic or hydrated mantle material, (iii) a megascale melange composed of high pressure (HP) and ultra-high pressure (UHP) metamorphic rocks extruded from the subduction channel, and (iv) the upward tilted frontal part of the remaining lid. The P-T paths and time scales correspond to those typically recorded in orogenic belts. The simulation shows that HP/UHP metamorphism of continental crust does not necessarily indicate collision, but that the material can be derived from the active margin by subduction erosion and extruded from the subduction channel beneath the forearc during ongoing subduction.
机译:俯冲通道和造山楔的演化以活动大陆边缘的二维方式进行了模拟,并为选定的标记显示了P-T路径。在我们的模拟中,俯冲侵蚀影响了活动边缘,并在几千万年内形成了一种结构模式,从沟槽到前臂有四个区域:(i)低品位变质沉积材料的增生复合物,(ii)楔形物的上,下地壳交替,海洋或水合地幔物质的少量交织,(iii)由俯冲河道挤出的高压(HP)和超高压(UHP)变质岩组成的大型混杂岩(iv)其余盖子向上倾斜的正面部分。 P-T路径和时标对应于造山带中通常记录的那些。模拟表明,大陆壳的HP / UHP变质不一定表明有碰撞,但是在俯冲过程中,该物质可以通过俯冲侵蚀从活动边缘导出,并从前臂下方的俯冲通道挤出。

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