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Differential growth of the northern Tibetan margin: evidence for oblique stepwise rise of the Tibetan Plateau

机译:北藏边缘的差异增长:倾斜逐步崛起的倾斜升高

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Models of how high elevations formed across Tibet predict: (a) the continuous thickening of a “viscous sheet”; (b) time-dependent, oblique stepwise growth; and (c) synchronous deformation across Tibet that accompanied collision. Our new observations may shed light on this issue. Here, we use 40Ar/39Ar and (U-Th)/He thermochronology from massifs in the hanging walls of thrust structures along the Kunlun Belt, the first-order orogenic range at the northern Tibetan margin, to elucidate the exhumation history. The results show that these massifs, and hence the plateau margin, were subject to slow, steady exhumation during the Early Cenozoic, followed by a pulse of accelerated exhumation during 40–35?Ma. The exhumation rate increases westward (from ~0.22 to 0.34 and 0.5?mm/yr). The two-fold increase in exhumation in the western part (0.5?mm/yr) compared to the eastern part suggests westward increases in exhumation and compressional stress along the Kunlun Belt. We relate these observations to the mechanisms responsible for the oblique stepwise rise of Tibet. After collision, oblique subduction beneath Kunlun caused stronger compressional deformation in the western part than in the eastern part, resulting in differential growth and lateral extrusion.
机译:跨西藏预测的高升高的模型:(a)“粘性片”的连续增厚; (b)时间依赖,倾斜逐步增长; (c)伴随着碰撞的西藏同步变形。我们的新观察可能会在这个问题上阐明。在这里,我们使用沿着昆仑腰带的推力结构悬挂结构中的悬挂墙壁的40AR / 39AR和(U-TH)/ HE热量学,这是北部北部的一阶orgensic范围,以阐明挖掘历史。结果表明,这些受裂度,并因此在早期新生代期间进行了缓慢,稳定的散发,然后在40-35℃下进行加速散发的脉冲。呼口速率向西增加(从〜0.22到0.34和0.5?mm / yr)。与东部的西部(0.5Ωmm/ yr)挖出的两倍增加(0.5?mm / yr)表明沿着昆仑腰带的挖掘和压缩压力向西增加。我们将这些观察结果与负责西藏逐步升高的机制相关联。碰撞后,昆仑下面的倾斜俯冲导致西部的较强的压缩变形而不是东部,导致差别生长和横向挤出。

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