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Morphometric Analysis to Infer Hydrological Behaviour of Lidder Watershed, Western Himalaya, India

机译:形态分析法推断印度喜马拉雅山小流域水文行为

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West Lidder River, in the Northwest Greater-Himalayan mountain range, is the major source of irrigation and drinking water supplies for the Kashmir Valley with a population of seven million people. The major source of water for the whole Lidder River is snow and icemelt emanating from its two subcatchments East Lidder and West Lidder. Snowmelt significantly contributes to the evolution of drainage patterns in this area. Quantitative morphometry plays a vital role in routing the snowmelt and other hydrological processes. Morphometric analysis of the West Lidder River catchment was carried out using geospatial technique. The outcome revealed that the entire study area has uniform lithology and is structurally permeable. The high drainage density of all subwatersheds indicate more surface runoff. The morphometric analysis also indicates that the area is more prone to weathering due to very-coarse to coarse drainage texture. All the subwatersheds showed dendritic to subdendritic drainage pattern. An immense control of structure on the drainage in some subwatersheds is indicated by their high bifurcation ratios. Circulatory and elongation ratios show that the subwatersheds have elongated to circular shapes. From the integrated analysis of the morphometric parameters, important hydrologic behaviour of 17 subwatersheds could be inferred.
机译:西北大喜马拉雅山脉的西里德河是克什米尔山谷(人口700万人)的主要灌溉和饮用水供应来源。整个里德河的主要水源是来自其两个子汇水区东里德和西里德的冰雪融化。融雪极大地促进了该地区排水方式的演变。定量形态计量学在融雪和其他水文过程中起着至关重要的作用。西利德河流域的形态计量学分析是使用地理空间技术进行的。结果表明,整个研究区域具有统一的岩性,并且在结构上是可渗透的。所有子流域的高排水密度表明更多的地表径流。形态计量学分析还表明,由于非常粗糙的排水质地较粗,该地区更容易遭受风化。所有亚流域均显示出树突状至亚树突状排水模式。高分叉比表明某些子流域对排水结构的巨大控制。循环比和伸长比表明,小流域已伸长为圆形。通过形态参数的综合分析,可以推断出17个小流域的重要水文行为。

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