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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >A geostatistical extreme-value framework for fast simulation of natural hazard events
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A geostatistical extreme-value framework for fast simulation of natural hazard events

机译:快速模拟自然灾害事件的地统计极值框架

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摘要

We develop a statistical framework for simulating natural hazard events that combines extreme value theory and geostatistics. Robust generalized additive model forms represent generalized Pareto marginal distribution parameters while a Student's t-process captures spatial dependence and gives a continuous-space framework for natural hazard event simulations. Efficiency of the simulation method allows many years of data (typically over 10 000) to be obtained at relatively little computational cost. This makes the model viable for forming the hazard module of a catastrophe model. We illustrate the framework by simulating maximum wind gusts for European windstorms, which are found to have realistic marginal and spatial properties, and validate well against wind gust measurements.
机译:我们开发了一个用于模拟自然灾害事件的统计框架,该框架结合了极值理论和地统计学。健壮的广义加性模型形式表示广义的Pareto边际分布参数,而Student's t-过程捕获空间依赖性并为自然灾害事件模拟提供连续的空间框架。仿真方法的效率允许以相对较少的计算成本获得多年的数据(通常超过10,000个)。这使该模型可用于形成巨灾模型的危害模块。我们通过模拟欧洲风暴的最大阵风来说明该框架,发现该阵风具有逼真的边际和空间特性,并针对阵风测量进行了很好的验证。

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