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Discharge hydrograph estimation at upstream-ungauged sections by coupling a Bayesian methodology and a 2-D GPU shallow water model

机译:通过结合贝叶斯方法和二维GPU浅水模型估算上游未开挖段的水文图

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This paper presents a novel methodology for estimating the unknown discharge hydrograph at the entrance of a river reach when no information is available. The methodology couples an optimization procedure based on the Bayesian geostatistical approach (BGA) with a forward self-developed 2-D hydraulic model. In order to accurately describe the flow propagation in real rivers characterized by large floodable areas, the forward model solves the 2-D shallow water equations (SWEs) by means of a finite volume explicit shock-capturing algorithm. The two-dimensional SWE code exploits the computational power of graphics processing units (GPUs), achieving a ratio of physical to computational time of up to 1000. With the aim of enhancing the computational efficiency of the inverse estimation, the Bayesian technique is parallelized, developing a procedure based on the Secure Shell (SSH) protocol that allows one to take advantage of remote high-performance computing clusters (including those available on the Cloud) equipped with GPUs. The capability of the methodology is assessed by estimating irregular and synthetic inflow hydrographs in real river reaches, also taking into account the presence of downstream corrupted observations. Finally, the procedure is applied to reconstruct a real flood wave in a river reach located in northern Italy.
机译:本文提出了一种新的方法,用于在没有可用信息的情况下估算河段入口处的未知流量水位图。该方法将基于贝叶斯地统计方法(BGA)的优化程序与正向自行开发的二维水力模型相结合。为了准确描述以大洪水区域为特征的真实河流中的水流传播,前向模型通过有限体积的显式震荡捕捉算法来求解二维浅水方程(SWE)。二维SWE代码利用图形处理单元(GPU)的计算能力,实现了高达1000的物理时间与计算时间之比。为了提高逆估计的计算效率,贝叶斯技术被并行化,根据安全外壳(SSH)协议开发一种程序,该程序使人们能够利用配备GPU的远程高性能计算集群(包括云上可用的集群)。该方法的能力通过估算实际河段中的不规则和合成流入水线图来评估,同时还考虑了下游损坏的观测资料的存在。最后,该程序可用于重建位于意大利北部河段的真实洪水波。

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