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Simulation of Summer Hourly Stream Flow by Applying TOPMODEL and Two Routing Algorithms to the Sparsely Gauged Lhasa River Basin in China

机译:应用TOPMODEL和两种路由算法模拟中国稀疏的拉萨河流域夏季每小时径流。

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This paper develops a new routing algorithm for improving simulation capacity of physically-based hydrological models applied to sparsely-gauged river basins. The study area is the Lhasa River basin, a large plateau basin with an area of 26,225 km2 in southwest China. In the basin, observations from three hydrological stations are available, and the observed hourly rainfall and summer stream flow data (12 June to 30 September) for the period of 1998–2000 obtained from the three stations were used. TOPMODEL, with its original routing algorithm, which is a distance-related delay function, was applied to the Lhasa River basin. To improve the routing algorithm using a unit hydrograph function and a linear reservoir method, this study proposed a new algorithm; the results revealed that the new algorithm improved the simulation of the variation of hourly stream flow. In addition, to evaluate the influence of rainfall spatial variation on runoff generation, observed rainfall series from the three gauges were used to simulate runoff individually, and it was found that there are significant differences among the three simulated hourly stream flow series.
机译:本文开发了一种新的路由算法,以提高适用于稀疏流域的基于物理的水文模型的仿真能力。研究区域是拉萨河流域,这是一个大的高原流域,面积为26,225 km 2 。在流域,可以使用三个水文站的观测资料,并使用从三个水文站获得的1998-2000年期间的每小时降水量和夏季水流数据(6月12日至9月30日)。 TOPMODEL及其原始路由算法是距离相关的延迟函数,已应用于拉萨河流域。为了改进使用单位水位图函数和线性水库方法的路由算法,本研究提出了一种新的算法。结果表明,该新算法改进了小时流量变化的模拟。此外,为了评估降雨空间变化对径流产生的影响,使用三个量表的观测降雨序列分别模拟了径流,发现三个模拟的小时流量序列之间存在显着差异。

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