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Tectono-climatic influence on landscape changes in the glaciated Durung Drung basin, Zanskar Himalaya, India: A geospatial approach

机译:构造气候对印度Zanskar喜马拉雅山冰川Durun Drung盆地景观变化的影响:一种地理空间方法

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This study aims at assessing the tectonic and climatic responses to landscape changes transpired in the Durung Drung basin in the Zanskar Himalaya. We used relevant geomorphic indices interpreted from ASTER DEM satellite data and supplemented by the field observations to decipher active tectonics and resultant changes in the landscape. A N-S trending fault in the north of the basin was studied with the help of basin geometry which includes relative parameter, length area relation, form factor, shape factor ratio, elongation ratio, circulatory ratio, compactness coefficient and morphotectonic indices (e.g., drainage basin asymmetry, mountain front sinuosity, hypsometric integral, topographic symmetric factor) to comprehend the geomorphic signatures of the active tectonics. The geomorphic indices indicate upliftment and filling of the basin. The data on mountain front index and hypsometric integral reveal the uplift and high relief. We propose that the western side of the basin is tectonically more active than eastern side, suggesting active upliftment. The convex nature of hypsometric curve and strongly elongated circulatory ratio reflect competing role of deformation by tectonics. The results of mountain front index and hypsometric integral reveal high relief and uplift. Overall deglaciation of 12.91% was observed in the basin. Analysis of the meteorological data for the last century (1901-2017) indicate that increase in minimum and maximum temperature coupled with increase in liquid precipitation are probably the main drivers of glacier depletion. We conclude that the drainage system of this basin is structurally controlled and overall landscape change is significantly influenced by the ongoing perturbations in the climate system.
机译:这项研究的目的是评估对赞斯卡喜马拉雅山Durung Drung盆地发生的景观变化的构造和气候响应。我们使用了从ASTER DEM卫星数据中解译出来的相关地貌指数,并通过野外观察补充了活动构造和由此产生的景观变化。利用盆地几何学研究了盆地北部的一个NS趋势断层,包括相关参数,长度面积关系,形状因子,形状因子比,伸长率,循环比,压实系数和构造构造指数(例如流域盆地)不对称性,山前弯曲度,水势积分,地形对称因子)来理解活跃构造的地貌特征。地貌指数指示盆地的隆升和充填。有关山锋指数和水势积分的数据显示了隆起和高浮雕。我们认为该盆地的西侧在构造上比东侧更为活跃,这表明该地区正在积极向上抬升。测压曲线的凸性和强烈延长的循环比反映了构造学对形变的竞争作用。山锋指数和水压积分的结果显示出高浮雕和隆起。在盆地中观测到整体冰消作用为12.91%。对上个世纪(1901-2017)气象数据的分析表明,最低和最高温度的升高以及液体降水的增加可能是冰川耗竭的主要驱动力。我们得出的结论是,该流域的排水系统在结构上受到控制,整个景观变化受到气候系统持续扰动的显着影响。

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