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由于柯西主值积分的奇异性和贝塞尔函数的振荡性,有限水深情况下复杂格林函数及其导数的精确数值求解一直是浅水中波浪水动力计算的难点,因此寻找格林函数的精确数值解显得非常重要.通过对格林函数奇异项进行变形推导,文中给出了一种去掉了奇点的新积分形式.另外通过改进前人推导的Gauss-Laguerre积分方法,给出了一种改进的新Gauss-Laguerre积分方法.格林函数及其导数的数值结果显示文中给出的两种新方法可以有效地计算复杂格林函数及其导数值.最后对这两种方法、级数解以及传统的Gauss-Laguerre积分方法的计算精度和效率进行了比较研究,结果显示文中给出的两种方法的计算精度高于传统的Gauss-Laguerre积分方法,但其计算效率低于级数解.但在接近于0的近场附近级数解失真,而文中提出的改进的新Gauss-Laguerre积分方法可以获得正确结果.同时当频率和水深均较大时级数解失真,而文中提出的方法也可以获得正确结果.最后针对这些方法的优缺点,该文提出了建议的策略用于计算有限水深格林函数. 相似文献
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船舶航行时水动力系数求解二维半理论的稳定算法 总被引:4,自引:2,他引:2
给出一种基于高速细长体理论的预报排水型船在波浪上运动水动力求解的数值方法.在该理论的定解条件中,自由面条件是三维的,而控制方程和物面条件则是二维的,所以称为二维半理论.采用二维时域自由面Green函数将定解问题转化为船体切片上的积分方程,进而求解有航速下的船舶水动力问题.重点讨论了水动力计算的稳定算法.对ITTC建议的标准WIGLEY船型作了理论预报,并与DELFT大学的实验结果和用STF切片法的理论预报结果作了比较.比较结果表明,本文提出的二维半理论的预报结果与试验结果相当接近,而计算效率和切片法相当,且大大改善了理论预报的精度. 相似文献
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For the design of maritime structures in waves, the extreme values of responses such as motions and wave impact loads are required. Waves and wave-induced responses are stochastic, so such responses should always be related to a probability. This information is not easy to obtain for strongly non-linear responses such as wave impact forces. Usually class rules or direct assessment via experiments or numerical simulations are applied to obtain extreme values for design. This brings up questions related to the convergence of extreme values: how long do we need to test in order to obtain converged statistics for the target duration? Or, vice versa: given testing data, what is the uncertainty of the associated statistics? Often the test or simulation duration is cut up in ‘seeds’ or ‘realisations’, with an exposure duration of one or three hours based on the typical duration of a steady environmental condition at sea, or the time that a ship sails a single course. The required number of seeds for converged results depends on the type of structure and response, the exposure duration, and the desired probability level. The present study provides guidelines for the convergence of most probable maximum (MPM) wave crest heights and MPM green water wave impact forces on a ferry. Long duration experiments were done to gain insight into the required number of seeds, and the effect of fitting. The present paper presents part 1 of this study; part 2 [1] presents similar results for wave-in-deck loads on a stationary deck box. 相似文献