首页> 外文会议>Proceedings of the 28th international conference on ocean, offshore and arctic engineering 2009 >A FAST CONVERGENT MODAL-EXPANSION OF THE WAVE POTENTIAL WITH APPLICATION TO THE HYDRODYNAMIC AND HYDROELASTIC ANALYSIS OF FLOATING BODIES IN GENERAL BATHYMETRY
【24h】

A FAST CONVERGENT MODAL-EXPANSION OF THE WAVE POTENTIAL WITH APPLICATION TO THE HYDRODYNAMIC AND HYDROELASTIC ANALYSIS OF FLOATING BODIES IN GENERAL BATHYMETRY

机译:波浪势的快速收敛模态扩展及其在一般船体浮体水动力和水弹力分析中的应用

获取原文
获取原文并翻译 | 示例

摘要

A non-linear coupled-mode system of horizontal equations has been derived with the aid of Luke's (1967) variational principle, modelling the evolution of nonlinear water waves in intermediate depth and over a general bathymetry Athanassoulis & Belibassakis (2002,2008). Following previous work by the authors in the case of linearised water waves (Athanassoulis & Belibassakis 1999), the vertical structure of the wave field is exactly represented by means of a local-mode series expansion of the wave potential. This series contains the usual propagating and evanescent modes, plus two additional modes, the free-surface mode and the sloping-bottom mode, enabling to consistently treat the non-vertical end-conditions at the free-surface and the bottom boundaries. The coupled-mode system fully accounts for the effects of non-linearity and dispersion. The main feature of this approach that a small number of modes (of the order of 5-6) are enough for the precise numerical solution, provided that the two new modes (the free-surface and the sloping-bottom ones) are included in the local-mode series. The consistent coupled-mode system has been applied to numerical investigation of families of steady nonlinear travelling wave solutions in constant depth (Athanassoulis & Belibassakis 2007) showing good agreement with known solutions both in the Stokes and the cnoidal wave regimes. In the present work we focus on the hydroelastic analysis of floating bodies lying over variable bathymetry regions, with application to the non-linear scattering of water waves by large floating structures (of VLFS type or ice sheets) characterised by variable thickness (draft), flexural rigidity and mass distributions, modelled as thin plates of variable thickness, extending previous approaches (see, e.g., Porter & Porter 2004, Belibassakis & Athanassoulis 2005, 2006, Bennets et al 2007).rnNumerical examples are presented, showing that useful results can be obtained for the analysis of large floating elastic bodies or structures very efficiently by keeping only a few terms in the expansion. Ideas for extending our approach to 3D are also discussed.
机译:借助卢克(1967)的变分原理,推导了一个非线性方程组的水平方程组,该模型对中等深度和一般测深仪上的非线性水波的演化进行了建模(Athanassoulis&Belibassakis(2002,2008))。根据作者先前关于线性化水波的研究(Athanassoulis&Belibassakis 1999),波场的垂直结构通过波势的局部模式级数展开来精确表示。该系列包含通常的传播和渐逝模式,以及两个附加模式,自由表面模式和倾斜底部模式,从而能够始终如一地处理自由表面和底部边界处的非垂直最终条件。耦合模式系统充分考虑了非线性和色散的影响。这种方法的主要特点是,少量的模式(5-6级)足以满足精确的数值解,前提是要包括两种新模式(自由曲面和斜底模式)本地模式系列。一致的耦合模式系统已应用于恒定深度的稳态非线性行波解系列的数值研究(Athanassoulis&Belibassakis 2007),显示出与斯托克斯和正弦波域中的已知解都很好的吻合。在目前的工作中,我们专注于位于可变测深区域上的浮体的水弹性分析,并将其应用于以可变厚度(草稿)为特征的大型浮体(VLFS型或冰原)的水波非线性散射,弯曲刚度和质量分布,模拟为厚度可变的薄板,扩展了以前的方法(例如,参见Porter&Porter 2004,Belibassakis&Athanassoulis 2005、2006,Bennets等2007)。rn给出了算例,表明有用的结果可以通过仅在扩展中保留几项,就可以非常有效地分析大型浮动弹性体或结构。还讨论了将我们的方法扩展到3D的想法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号