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首页> 外文期刊>Water Resources Management >A More Efficient Rainfall Intensity-Duration-Frequency Relationship by Using an “at-site” Regional Frequency Analysis: Application at Mediterranean Climate Locations
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A More Efficient Rainfall Intensity-Duration-Frequency Relationship by Using an “at-site” Regional Frequency Analysis: Application at Mediterranean Climate Locations

机译:通过使用“现场”区域频率分析,更有效的降雨强度-持续时间-频率关系:在地中海气候位置的应用

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Intensity-duration-frequency (IDF) relationships are the tools for obtaining design rainfall estimation. Their calculation requires rainfall data not commonly available in time. The scarce spatial information makes it difficult to perform a Regional Frequency Analysis (RFA). The objective of this paper was to establish a new method to obtain more efficient IDF relationships than those traditionally applied, by using at-site regional frequency analysis. An application to rainfall datasets from two Mediterranean climate locations (Spain and Chile) has been set up. Nine annual maximum rainfall data series (AMS) of duration from 10 min to 24 h were analyzed. The tests of Mann–Whitney for homogeneity, Wald-Wolfowitz for independence and Mann-Kendall for stationarity, were conducted to test the underlying assumptions in frequency analyses. The RFA tests identified the nine considered datasets from each location as a homogeneous region, and the suitable regional frequency distribution to establish the regional growth curves. Considering the regional index flood model, the regional growth curves were used to obtain the rainfall quantiles for the return periods and durations considered at each location Their combination with the equations obtained after correlating the mean values from the AMS and their durations permitted the obtainment of the new power-type IDF relationships.. The efficiency of the new model was evaluated by using several efficiency indexes, being more efficient and giving a better performance compared to traditional IDF models. The proposed method offers great application possibilities in Mediterranean climate areas located in the Mediterranean Catchment, California, Mexico, Central Chile, Australia and South Africa.
机译:强度-持续时间-频率(IDF)关系是获得设计降雨估算的工具。他们的计算需要及时获得降雨数据。稀缺的空间信息使执行区域频率分析(RFA)变得困难。本文的目的是通过使用现场区域频率分析,建立一种新的方法来获得比传统方法更有效的IDF关系。已经建立了一个对来自两个地中海气候地点(西班牙和智利)的降雨数据集的应用程序。分析了持续时间从10分钟到24小时的9个年度最大降雨数据系列(AMS)。进行了Mann-Whitney的同质性测试,Wald-Wolfowitz的独立性和Mann-Kendall的平稳性测试,以检验频率分析中的基本假设。 RFA测试将来自每个位置的九个考虑的数据集标识为同质区域,并确定了合适的区域频率分布以建立区域增长曲线。考虑到区域指数洪水模型,使用区域增长曲线来获得每个地点考虑的返回期和持续时间的降雨分位数。它们与将AMS的平均值和持续时间相关联后得到的方程相结合,从而获得了通过使用多个效率指标评估了新模型的效率,与传统的IDF模型相比,该模型效率更高且具有更好的性能。所提出的方法在位于地中海集水区,加利福尼亚,墨西哥,智利中部,澳大利亚和南非的地中海气候地区提供了巨大的应用可能性。

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