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Geomorphic indices of rivers and drainage in China’s Longmen Shan Fault zone and their implications for regional tectonic activity

机译:龙门山断裂带河流排水地貌指数及其对区域构造活动的影响

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Theoretical models suggest that active tectonic deformation can impose a primary control on the patterns and styles of channels. The Longmen Shan Fault zone, which is located on the eastern margin of the Tibetan Plateau, has experienced strong tectonic activity, including uplift and strike-slip phases of tectonic movements. Here, we adopt ASTER-GDEM2 data and utilise a stream-power incision model to extract information on the spatial characteristics of differential tectonic movements. Analysis of the patterns and styles of 37 channels exhibits systematic differences in the channel steepness indices and the river sinuosity values along the strike of the Longmen Shan Fault zone. Our primary results demonstrate that the normalised channel steepness indices in the southern part of the Longmen Shan Fault zone are much higher than those in the northern part, where the river sinuosity values are much lower. Comparisons between the five drainage basins reveal that the river systems in the middle southern part of the fault zone are mainly controlled by tectonic uplift and thrusting, whereas the river systems in the middle northern part of the fault zone are mostly attributed to right-lateral strike-slip movement.
机译:理论模型表明,主动构造变形可以对通道的样式和样式施加主要控制。位于青藏高原东缘的龙门山断裂带经历了强烈的构造活动,包括构造运动的隆升和走滑阶段。在这里,我们采用ASTER-GDEM2数据,并利用流功率切入模型提取有关差异构造运动空间特征的信息。对37条河道的样式和样式的分析显示,在沿龙门山断裂带走向的河道陡度指数和河流曲率值上存在系统性差异。我们的主要结果表明,龙门山断裂带南部的归一化河道陡度指数远高于河流窦性值低得多的北部。五个流域的比较表明,断裂带中南部的河流系统主要受构造隆升和逆冲作用控制,而断裂带中北部的河流系统主要归因于右走向滑运动。

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