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Applying a coupled hydrometeorological simulation system to flash flood forecasting over the Korean Peninsula

机译:将耦合水文气象模拟系统应用于朝鲜半岛山洪预报

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In flash flood forecasting, it is necessary to consider not only traditional meteorological variables such as precipitation, evapotranspiration, and soil moisture, but also hydrological components such as streamflow. To address this challenge, the application of high resolution coupled atmospheric-hydrological models is emerging as a promising alternative. This study demonstrates the feasibility of linking a coupled atmospheric-hydrological model (WRF/WRFHydro) with 150-m horizontal grid spacing for flash flood forecasting in Korea. The study area is the Namgang Dam basin in Southern Korea, a mountainous area located downstream of Jiri Mountain (1915 m in height). Under flash flood conditions, the simulated precipitation over the entire basin is comparable to the domain-averaged precipitation, but discharge data from WRF-Hydro shows some differences in the total available water and the temporal distribution of streamflow (given by the timing of the streamflow peak following precipitation), compared to observations. On the basis of sensitivity tests, the parameters controlling the infiltration of excess precipitation and channel roughness depending on stream order are refined and their influence on temporal distribution of streamflow is addressed with intent to apply WRF-Hydro to flash flood forecasting in the Namgang Dam basin. The simulation results from the WRF-Hydro model with optimized parameters demonstrate the potential utility of a coupled atmospheric-hydrological model for forecasting heavy rain-induced flash flooding over the Korean Peninsula.
机译:在山洪预报中,不仅要考虑传统的气象变量,如降水,蒸散量和土壤湿度,还应考虑水文要素,如水流。为了应对这一挑战,高分辨率耦合大气水文模型的应用正在成为有希望的替代方案。这项研究证明了将耦合的大气水文模型(WRF / WRFHydro)与150米的水平网格间距链接用于韩国山洪预报的可行性。研究区域是韩国南部的南岗水坝盆地,位于吉里山下游(1915 m高)的山区。在山洪条件下,整个流域的模拟降水量与区域平均降水量相当,但是WRF-Hydro的流量数据显示总可用水量和水流的时间分布(视水流时间而定)存在一些差异。与观测值相比)。在敏感性试验的基础上,细化了控制过量降水入渗和河道糙率的参数,取决于流序,并解决了它们对水流时间分布的影响,目的是将WRF-Hydro应用于南岗大坝盆地的山洪预报。 。来自WRF-Hydro模型的优化参数仿真结果表明,耦合的大气水文模型可用于预测朝鲜半岛暴雨引起的山洪暴发。

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