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Application of precipitation products for flood modeling of transboundary river basin: a case study of Jhelum Basin

机译:跨界河流域洪水建模沉淀产品的应用 - 以Jhelum盆地为例

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The main objective of this study is the flood modeling of the River Jhelum Basin in the Jammu and Kashmir using the Integrated Flood Analysis System (IFAS) hydrological model. The region having an area of 33,000 km(2) has a limited rain gauge coverage. The data inaccessibility is accentuated due to the mountainous topography, glaciers, and remote areas. This research makes innovative use of the Asian Precipitation - Highly-Resolved Observational Data Integration Towards Evaluation (APHRODITE) dataset to overcome the data scarcity for the basin. For flood modeling, a regionalized approach was adopted, whereby the four main tributaries of the River Jhelum Basin were separately modeled. The parameters, thus, determined, were later used in the modeling of the River Jhelum, the main river of the basin. The model was calibrated on the medium-high flood of 2010 and validated on the very high flood of 2014, obtaining good results as indicated by Nash-Sutcliffe Model Efficiency Coefficient (NSE) of 0.77. Later, the model was executed using the Global Satellite Mapping of Precipitation (GSMaP). It performed adequately for the high flood event of 2014, while for the flood of 2010, it gave poor results. Besides, this study also demonstrates the efficacy of a new generation of computer models that work by accessing the free global datasets available on the web for hydrological modeling.
机译:本研究的主要目的是使用综合洪水分析系统(IFA)水文模型,是Jammu和Kashmir中Jhelum盆地的洪水建模。面积33,000公里(2)的地区具有有限的雨量覆盖率。由于山地地形,冰川和偏远地区,数据无法访问。本研究使亚洲降水的创新利用 - 高度解决的观察数据集成评估(Aphrodite)数据集,以克服盆地的数据稀缺。对于洪水建模,采用了一种区域化方法,其中河滨河流河河的四个主要支流被单独建模。因此,确定的参数后来用于河流主河的Jhelum River Jhelum的建模中。该模型在2010年中高洪水上校准,并在2014年的大洪水中验证,获得了0.77的NASH-SUTCLIFFE模型效率系数(NSE)所示的良好结果。稍后,使用沉淀(GSMAP)的全球卫星映射执行该模型。它适用于2014年的高洪水事件,而对于2010年的洪水,结果不佳。此外,本研究还展示了新一代计算机模型的功效来通过访问Web上可用的免费全球数据集进行水文建模。

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