首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >EFFICIENT DERIVATION OF THE PROBABILITY DISTRIBUTION OF THE EXTREME VALUES OF OFFSHORE STRUCTURAL RESPONSE TAKING ADVANTAGE OF ITS CORRELATION WITH EXTREME VALUES OF LINEAR RESPONSE
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EFFICIENT DERIVATION OF THE PROBABILITY DISTRIBUTION OF THE EXTREME VALUES OF OFFSHORE STRUCTURAL RESPONSE TAKING ADVANTAGE OF ITS CORRELATION WITH EXTREME VALUES OF LINEAR RESPONSE

机译:利用海洋线性结构响应的极值与线性响应的极值的相关性,有效推导其概率分布的极值分布

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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 required for their safe and economical design. To this end, the conventional simulation technique (CTS) is frequently used for predicting the probability distribution of the extreme values of response. However, this technique suffers from excessive sampling variability and hence a large number of simulated response extreme values (hundreds of simulated response records) are required to reduce the sampling variability to acceptable levels. A more efficient method (ETS) was recently introduced which takes advantage of the correlation between the extreme values of surface elevation and their corresponding response extreme values. The method has proved to be very efficient for high-intensity sea states; however, the correlation and hence the efficiency and accuracy of the technique reduces for sea states of lower intensity. In this paper, a more efficient version of the ETS technique is introduced which takes advantage of the correlation between the extreme values of the nonlinear response and their corresponding linear response values.
机译:海洋结构暴露于海洋环境中的随机波浪载荷中,因此,对于其安全经济的设计,要求其对波浪载荷响应的极值的概率分布。为此,常规仿真技术(CTS)经常用于预测响应极值的概率分布。但是,该技术具有过大的采样可变性,因此需要大量的模拟响应极值(数百个模拟响应记录)才能将采样可变性降低到可接受的水平。最近引入了一种更有效的方法(ETS),该方法利用了表面标高的极端值与其对应的响应极端值之间的相关性。实践证明,该方法对于高强度海况非常有效。但是,对于强度较低的海况,该技术的相关性以及因此的效率和准确性都会降低。在本文中,介绍了一种更有效的ETS技术,该技术利用了非线性响应的极值与其对应的线性响应值之间的相关性。

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