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首页> 外文期刊>Journal of offshore mechanics and arctic engineering >Estimation of Short-and Long-Term Probability Distributions of Wave-Induced Loads Acting on a Cruise Vessel in Extreme Seas
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Estimation of Short-and Long-Term Probability Distributions of Wave-Induced Loads Acting on a Cruise Vessel in Extreme Seas

机译:极端海洋中作用于游轮的波浪感应载荷的短期和长期概率分布估计

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摘要

A time domain code based on strip theory is applied to calculate the probability distributions of relative motions and bending moments of a cruise ship in a set of extreme seas. The code includes two levels of complexity. The simpler one combines linear radiation and diffraction forces with nonlinear Froude–Krylov forces, hydrostatic forces, and shipping of green water on the bow. Cummins formulation is used to represent the radiation forces. The second approach is a generalization of the first one and, although the formulation is based on the linear assumption (of the radiation forces), the effects of body nonlinearity are considered by a simplified method: the memory functions, infinite frequency added masses, and the radiation restoring coefficients are assessed at each time instant as function of the instantaneous wetted surface. A similar procedure is used to calculate the diffraction forces. The code is used to analyze the responses of a cruise ship in a set of extreme sea conditions. The short-term nonlinear responses are represented by empirical probability distributions, obtained from the nonlinear time domain simulations, and the quality of the predictions is assessed by comparing with model tests experimental data. Finally, the long-term value of the bending moment is calculated from the short-term distribution of the nonlinear loads in a few extreme sea states selected based on coefficient of contribution method, and the results are compared with the International Association of Classification Societies (IACS) rule bending moment.
机译:应用基于条带理论的时域代码,计算了一组极端海域中一艘游轮的相对运动和弯矩的概率分布。该代码包括两个级别的复杂性。比较简单的一种是将线性辐射和衍射力与非线性Froude-Krylov力,静水力以及船头上的绿水相结合。康明斯公式用于表示辐射力。第二种方法是第一种方法的一般化,尽管该公式是基于(辐射力的)线性假设,但是可以通过一种简化的方法来考虑人体非线性的影响:记忆函数,无限频率附加质量和在每个时刻根据瞬时润湿表面评估辐射恢复系数。使用类似的程序来计算衍射力。该代码用于在一系列极端海况下分析游轮的响应。短期非线性响应由从非线性时域仿真获得的经验概率分布表示,并且通过与模型测试实验数据进行比较来评估预测的质量。最后,根据贡献系数法从几种极端海状态下的非线性载荷的短期分布中计算出弯矩的长期值,并将其结果与国际船级社协会( IACS)规则弯矩。

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