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Mantle Subduction and Uplift of Intracontinental Mountains: A Case Study from the Chinese Tianshan Mountains within Eurasia

机译:庭院郊区的庭院覆盖覆盖:欧亚山区田山山的案例研究

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The driving mechanism that is responsible for the uplift of intracontinental mountains has puzzled geologists for decades. This study addresses this issue by using receiver function images across the Chinese Tianshan Mountains and available data from both deep seismic profiles and surface structural deformation. The near-surface structural deformation shows that the Tianshan crust experienced strong shortening during the Cenozoic. The receiver function image across the Tianshan Mountains reveals that the lithosphere of the Junggar Basin to the north became uncoupled along the Moho, and the mantle below the Moho subducted southwards beneath the northern part of the Tianshan Mountains, thereby thickening the overlying crust. Similar deep structures, however, are not observed under the Tarim Basin and the adjacent southern Tianshan Mountains. This difference in the deep structures correlates with geomorphological features in the region. Thus, a new model of mantle subduction, herein termed M-type subduction, is proposed for the mountain-building processes in intracontinental compressional settings. The available geomorphological, geological and seismic data in the literatures show that this model is probably suitable for other high, linear mountains within the continent.
机译:负责脑内山脉隆起的驱动机制几十年来的地质学家。本研究通过使用中国天山山脉的接收器函数图像以及来自深层地震型材和表面结构变形的可用数据来解决这个问题。近表面结构变形表明,天山地壳在新生代经历了强烈的缩短。天山山脉的接收器函数形象揭示了Junggar盆地到北方的岩石圈变得沿着Moho脱颖而出,而Moho下方的地幔在天山山区北部的南部化上调,从而加厚了上覆的地壳。然而,在塔里木盆地和邻近的天山山脉下,没有观察到类似的深层结构。深层结构的这种差异与该区域的地貌特征相关。因此,在本文称为M型俯冲的新型地幔俯冲模型被提出用于脑内压缩设置中的山地建设过程。文献中的可用地貌,地质和地震数据表明,该模型可能适用于大陆内的其他高线性山脉。

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