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Modelling runoff and its components in Himalayan basins

机译:在喜马拉雅盆地建模径流及其组件

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The hydrology of Himalayan basins is not well understood due to the complexities in the climate and geography, and the scarcity of data. The objective of this study is to quantitatively assess the contribution of various components of runoff in the Himalayan basins. To achieve this goal, the Hydrologiska Byrans Vattenbalansavdelning (HBV) model was used to simulate the runoff and its components on two Himalayan basins, the Beas River basin, India and the Wang Chhu basin, Bhutan. Four components: runoff from glacier melting, snow melting on glacier, snow melting outside glacier, and rainfall were identified by the HBV model. The simulation results show that the HBV model can give a fair estimation of the runoff of these two catchments and the effects of glaciers and snow are largely dependent on the catchment characteristics and the glaciated area. For the Wang Chhu basin, the largest contributor to runoff is rainfall, whereas melting of snow and glacier is dominant in the Beas River basin. This research will not only contribute to the improved understanding of the impacts of climate change on the hydrological response in the Himalaya area, but will also provide guidance for the development of hydropower potential and water resources assessment in these Himalayan basins.
机译:由于气候和地理的复杂性以及数据的稀缺性,喜马拉雅盆地的水文尚未得到很好的理解。本研究的目的是定量评估喜马拉雅盆地径流各种组成部分的贡献。为实现这一目标,水中敏捷媒体拜访Vattenbalansavdeling(HBV)模型用于模拟两家喜马拉雅盆地,Beas River盆地,印度和王志洲盆地的径流及其组件。四个组成部分:从冰川熔化,冰川融化,冰川外面的雪融化,并通过HBV模型确定了冰川融化的雪。仿真结果表明,HBV模型可以发挥这两个集水区的径流的公平估计,冰川和雪的效果在很大程度上取决于集水区特征和冰川区域。对于王轼盆地,径流最大的贡献者是降雨,而雪地和冰川的融化在船河流域占主导地位。该研究不仅有助于改善对气候变化对喜马拉雅地区水文反应的影响的改善,而且还将为这些喜马拉雅盆地的水电潜力和水资源评估的发展提供指导。

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