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PREDICTION OF OFFSHORE STRUCTURAL RESPONSE EXTREME VALUES BY MODIFIED FINITE-MEMORY NONLINEAR SYSTEM MODELING

机译:修改有限内存非线性系统建模预测海上结构响应极值

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Offshore structures are exposed to random wave loading in the ocean environment, and hence the probability distribution of the extreme values of their response to wave loading is of great value in the design of these structures. Due to nonlinearity of the drag component of Morison's wave loading and also due to intermittency of wave loading on members in the splash zone, the response is often non-Gaussian; therefore, simple techniques for derivation of the probability distribution of extreme responses are not available. However, it has recently been shown that the short-term response of an offshore structure exposed to Morison wave loading can be approximated by the response of an equivalent finite-memory nonlinear system (FMNS). Previous investigation has shown that the developed FMNS models perform better for high H_s values and that their performance for low H_s value is not particularly good. In this paper, MFMNS technique, a modified version of FMNS models is discussed. The improvement in MFMNS model is simply achieved by dividing the structure into two zones (Zones 1 and 2) so that the horizontal distance between the nodes in each zone is relatively small compared to the wavelengths. It is shown that MFMNS technique can be used to determine the short-term probability distribution of the extreme responses accurately with great efficiency.
机译:海洋结构暴露于海洋环境中的随机波装载,因此它们对波浪负荷的响应极值的概率分布在这些结构的设计中具有很大的价值。由于莫里森波浪的阻力分量的非线性以及由于飞溅区域中的成员的波浪负载的间歇性,响应通常是非高斯的;因此,不可用的简单技术导出极端响应的概率分布。然而,最近已经表明,通过等效的有限记忆非线性系统(FMN)的响应,可以近似暴露于莫里逊波浪负载的离岸结构的短期响应。之前的研究表明,开发的FMNS模型对于高H_S值更好,并且它们对低H_S值的性能并不是特别好。在本文中,讨论了MFMNS技术,讨论了FMNS模型的修改版本。通过将结构划分为两个区域(区域1和2)来简单地实现MFMNS模型的改进,使得与波长相比,每个区域中的节点之间的水平距离相对较小。结果表明,MFMNS技术可用于以极大的效率准确地确定极端响应的短期概率分布。

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