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Rainfall extremes: Toward reconciliation after the battle of distributions

机译:极端降雨:在分配战后实现和解

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摘要

[1] This study attempts to reconcile the conflicting results reported in the literature concerning the behavior of peak-over-threshold (POT) daily rainfall extremes and their distribution. By using two worldwide data sets, the impact of threshold selection and record length on the upper tail behavior of POT observations is investigated. The rainfall process is studied within the framework of generalized Pareto (GP) exceedances according to the classical extreme value theory (EVT), with particular attention paid to the study of the GP shape parameter, which controls the heaviness of the upper tail of the GP distribution. A twofold effect is recognized. First, as the threshold decreases, and nonextreme values are progressively incorporated in the POT samples, the variance of the GP shape parameter reduces and the mean converges to positive values denoting a tendency to heavy tail behavior. Simultaneously, the EVT asymptotic hypotheses are less and less realistic, and the GP asymptote tends to be replaced by the Weibull penultimate asymptote whose upper tail is exponential but apparently heavy. Second, for a fixed high threshold, the variance of the GP shape parameter reduces as the record length (number of years) increases, and the mean values tend to be positive, thus denoting again the prevalence of heavy tail behavior. In both cases, i.e., threshold selection and record length effect, the heaviness of the tail may be ascribed to mechanisms such as the blend of extreme and nonextreme values, and fluctuations of the parent distributions. It is shown how these results provide a link between previous studies and pave the way for more comprehensive analyses which merge empirical, theoretical, and operational points of view. This study also provides several ancillary results, such as a set of formulae to correct the bias of the GP shape parameter estimates due to short record lengths accounting for uncertainty, thus avoiding systematic underestimation of extremes which results from the analysis of short time series.>Citation: Serinaldi, F., and C. G. Kilsby (2014), Rainfall extremes: Toward reconciliation after the battle of distributions, Water Resour. Res., 50, 336–352, doi:.
机译:[1]本研究试图调和文献中报道的关于峰值以上阈值(POT)日常降雨极端行为及其分布的矛盾结果。通过使用两个全球数据集,研究了阈值选择和记录长度对POT观测值的上尾行为的影响。根据经典极值理论(EVT)在广义帕累托(GP)范围内研究降雨过程,尤其要注意GP形状参数的研究,该参数控制GP上尾的沉重程度分配。公认有双重效果。首先,随着阈值的降低,以及非极值逐渐纳入POT样本中,GP形状参数的方差减小,并且平均值收敛至正值,表示有严重尾巴行为的趋势。同时,EVT渐近假说越来越不现实,GP渐近线趋于被Weibull倒数第二渐近线所代替,其上尾部呈指数级但明显较重。其次,对于固定的高阈值,GP形状参数的方差随着记录长度(年数)的增加而减小,并且平均值趋于正值,从而再次表明了重尾行为的普遍性。在两种情况下,即阈值选择和记录长度效应,尾部的沉重可能归因于诸如极值和非极值的混合以及母体分布的波动之类的机制。结果表明,这些结果如何提供以前研究之间的联系,并为融合经验,理论和操作观点的更全面的分析铺平道路。这项研究还提供了一些辅助结果,例如一组公式,用于纠正由于记录时间短而导致的GP形状参数估计值的偏差(考虑到不确定性),从而避免了由于对短时间序列的分析而导致的对系统极端值的低估。 strong>引文: Serinaldi,F.和CG Kilsby(2014),极端降雨:在分配战后实现和解,水资源。 Res。,50,336–352,doi :.

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