中国舰船研究2024,Vol.19Issue(5) :28-34.DOI:10.19693/j.issn.1673-3185.03481

基于自动网格方法的船舶非线性兴波模拟

Nonlinear ship wave simulation using an automatic mesh generation method

石凯元 张祥瑞 田浩枫 朱仁传
中国舰船研究2024,Vol.19Issue(5) :28-34.DOI:10.19693/j.issn.1673-3185.03481

基于自动网格方法的船舶非线性兴波模拟

Nonlinear ship wave simulation using an automatic mesh generation method

石凯元 1张祥瑞 2田浩枫 1朱仁传1
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作者信息

  • 1. 上海交通大学 船舶海洋与建筑工程学院,上海 200240
  • 2. 上海交通大学 船舶海洋与建筑工程学院,上海 200240;中国船舶及海洋工程设计研究院,上海 200011
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摘要

[目的]针对船体绕流非线性波面和船体湿表面交互变化的复杂过程,提出一种用于船舶航行兴波模拟的网格自动生成方法.[方法]该方法以三角形的全船网格文件作为输入,在船舶航行兴波数值计算中随自由面变化自动生成自由面和瞬时湿表面网格,可自动处理含复杂艏艉线型的任意船型,具有强鲁棒性.基于提出的方法模拟KCS船在不同航速下的兴波.[结果]数值模拟的船侧波高、船体周围的自由面波形以及兴波阻力与试验结果吻合良好,且在较高速的航行工况下,模拟的KCS艉部兴波波面始终保持在艉封板下方,干艉现象有所体现.[结论]结果表明,所提方法可准确模拟船舶非线性兴波,且具有模拟方艉船型兴波特征的潜力.

Abstract

[Objectives]To simulate the complex nonlinear interactions between the free surface and in-stantaneous wetted hull surface during ship navigation,an automatic mesh generation method is proposed.[Methods]The method takes a whole-hull triangular mesh file as the input and automatically generates meshes for the instantaneously transforming free surface and wetted hull surface.It is able to handle arbitrary hullforms with complex bow and stern geometries while exhibiting strong robustness.Simulations of waves generated by a KCS hull at various speeds are then conducted using the proposed method.[Results]The predicted ship-side wave profiles,wave patterns around the hull,and wave-making resistance show good agreement with the experimental results.Moreover,at higher speeds,the simulated wave surface at the KCS stern consistently stays below the transom,exhibiting a dry transom characteristic.[Conclusions]The res-ults demonstrate that the proposed method can accurately model nonlinear ship waves and has the potential to simulate the flow fields around transom-stern ships.

关键词

全非线性/兴波阻力/势流/网格生成/方艉

Key words

fully nonlinear/wave-making resistance/potential flow/mesh generation/transom stern

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基金项目

国家自然科学基金资助项目(U2141228)

出版年

2024
中国舰船研究
中国舰船研究设计中心

中国舰船研究

CSTPCDCSCD北大核心
影响因子:0.496
ISSN:1673-3185
参考文献量17
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