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A regional monthly precipitation simulation model based on an L-moment smoothed statistical regionalization approach

机译:基于L矩平滑统计区域化方法的区域月降水模拟模型

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Using rain-gauge station records for the statistical characterization and simulation modeling of spatio-temporal precipitation field involves many issues and simplistic assumptions. One major issue is related to dealing with uncertainty at-site sample statistical inference, because of the limited length of records. Regional frequency analysis uses the idea of substituting space for time in order to reduce uncertainty. It assumes equal shapes of the precipitation statistical distributions in a region. However, this assumption limits the area of the analyzed region where this assumption is valid. The extension is dependent on terrain complexity. This work presents a new approach for the statistical regionalization of a large precipitation field, replacing the shape constancy assumption for the hypothesis of smooth spatial variation. The approach accounts for every uncertainty on site information, using an L-moment method for inference analysis. Additionally, the orographic effect is introduced in the regionalization, which substantially improves the interpolation performance and estimation of areal. precipitation. The approach is used for modeling the monthly precipitation field in the Jucar River Basin Authority Demarcation (Spain), incorporating its stochastic structure, and spatial dependency coming from a geostatistical analysis. Issues related to the estimation of regional precipitation, and mean areal. precipitation are discussed in the exposition. (C) 2007 Elsevier B.V. All rights reserved.
机译:利用雨量计站记录进行时空降水场的统计表征和模拟建模涉及许多问题和简单的假设。由于记录长度有限,一个主要问题与处理不确定性现场样本统计推断有关。区域频率分析使用以时间代替空间的想法,以减少不确定性。它假定一个区域中降水统计分布的形状相同。但是,此假设限制了该假设有效的分析区域的面积。扩展取决于地形复杂性。这项工作为大降水场的统计区域化提出了一种新方法,该方法取代了形状不变性假设,以用于平滑空间变化的假设。该方法使用L矩方法进行推理分析,解决了站点信息中的所有不确定性。另外,在区域化中引入了地形效应,从而大大提高了插值性能和面积估计。沉淀。该方法用于模拟Jucar流域管理局边界(西班牙)中的月降水场,并结合了其随机结构和来自地统计分析的空间相关性。与区域降水量估计和平均面积有关的问题。博览会上讨论了降水。 (C)2007 Elsevier B.V.保留所有权利。

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