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Evaluation and design of a rain gauge network using a statistical optimization method in a severe hydro-geological hazard prone area

机译:统计优化方法在严重水力地质危害易一区域评价与设计雨量网络

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Rainfall data collection gathered in continuous by a distributed rain gauge network is instrumental to more effective hydro-geological risk forecasting and management services though the input estimated rainfall fields suffer from prediction uncertainty. Optimal rain gauge networks can generate accurate estimated rainfall fields. In this research work, a methodology has been investigated for evaluating an optimal rain gauges network aimed at robust hydrogeological hazard investigations. The rain gauges of the Samo River basin (Southern Italy) has been evaluated by optimizing a two-objective function that maximizes the estimated accuracy and minimizes the total metering cost through the variance reduction algorithm along with the climatological variogram (time-invariant). This problem has been solved by using an enumerative search algorithm, evaluating the exact Pareto-front by an efficient computational time.
机译:虽然投入估计的降雨场遭受预测不确定性,但是通过分布式雨量仪网络聚集的降雨数据收集是更有效的水力地质风险预测和管理服务。最佳雨量仪网络可以产生准确的估计降雨场。在这项研究工作中,已经调查了一种方法来评估旨在旨在强大的水文地质危害调查的最佳雨量仪网络。通过优化了一个最大化估计精度的两个目标函数来评估萨摩河流域(南部意大利)的雨量,并通过差异减少算法以及气候变速仪(时间不变)最大限度地减少总计量成本。通过使用枚举搜索算法来解决这个问题,通过有效的计算时间评估精确的Paroto-forp。

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