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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Extremes of Nonlinear Vibration: Comparing Models Based on Moments, L-Moments, and Maximum Entropy
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Extremes of Nonlinear Vibration: Comparing Models Based on Moments, L-Moments, and Maximum Entropy

机译:非线性振动的极端:基于矩,L矩和最大熵的比较模型

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摘要

Wind and wave loads on offshore structures show nonlinear effects, which require non-Gaussian statistical models. Here we critically review the behavior of various non-Gaussian models. We first survey moment-based models; in particular, the four-moment "Hermite" model, a cubic transformation often used in wind and wave applications. We then derive an "L-Hermite" model, an alternative cubic transformation calibrated by the response "L-moments" rather than its ordinary statistical moments. These L-moments have recently found increasing use, in part because they show less sensitivity to distribution tails than ordinary moments. We find here, however, that these L-moments may not convey sufficient information to accurately estimate extreme response statistics. Finally, we show that four-moment maximum entropy models, also applied in the literature, may be inappropriate to model broader-than-Gaussian cases (e.g., responses to wind and wave loads).
机译:离岸结构上的风浪载荷表现出非线性效应,这需要非高斯统计模型。在这里,我们批判性地回顾了各种非高斯模型的行为。我们首先调查基于矩的模型;特别是四矩“ Hermite”模型,这是风和波浪应用中经常使用的三次变换。然后,我们得出一个“ L-Hermite”模型,该模型是通过响应“ L-矩”而不是其通常的统计矩校准的另一种立方变换。最近发现这些L力矩的使用越来越多,部分原因是它们对分布尾部的敏感性比普通矩低。但是,我们在这里发现,这些L矩可能无法传达足够的信息来准确估计极端响应统计信息。最后,我们证明了在文献中也应用的四矩最大熵模型可能不适用于对比高斯宽的情况进行建模(例如,对风和波浪载荷的响应)。

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