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Uplift of the West Kunlun Range, northern Tibetan Plateau, dominated by brittle thickening of the upper crust

机译:青藏高原北部昆仑山脉西段隆升,上地壳脆性增厚

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摘要

High-resolution seismic reflection data from the West Kunlun Range front show that crustal structures beneath the northwestern margin of the Tibetan Plateau are dominated by nappes of upper crustal rocks. Geological cross-section balancing suggests an average of 24.6-54 km (38%-52%) of upper crustal shortening. This horizontal shortening by brittle folding and faulting in the upper crust correlates positively with crustal thickening, an increase in Moho depth by 5-7 km, and the topography. Our work suggests that upper crustal shortening is a chief factor for topographic uplift and crustal thickening at the northwestern margin of the Tibetan Plateau. Such a mechanism is different from that proposed for the plateau south of the Karakax strike-slip fault, where crustal flow may have played a prominent role in plateau uplift.
机译:来自西昆仑山脉前缘的高分辨率地震反射数据表明,青藏高原西北缘以下的地壳结构以上地壳岩浆为主。地质剖面平衡表明上地壳缩短平均为24.6-54 km(38%-52%)。由于脆性折叠和上地壳的断裂而造成的水平缩短与地壳增厚,莫霍面深度增加了5-7 km和地形呈正相关。我们的工作表明,上青藏高原的缩短是青藏高原西北缘地形隆起和地壳增厚的主要因素。这种机制与卡拉卡克斯走滑断层以南高原的拟议机制不同,在该高原,地壳水流可能在高原隆升中起着重要作用。

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