Forces of fully nonlinear interfacial periodic waves on a cylindrical pile in a two-layer fluid with free-surface boundary conditions

IF 13 1区 工程技术 Q1 ENGINEERING, MARINE Journal of Ocean Engineering and Science Pub Date : 2023-05-30 DOI:10.1016/j.joes.2023.05.004
Jiyang Li , Zeng Liu , Jie Cui
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Abstract

In the frame of fully nonlinear potential flow theory, series solutions of interfacial periodic gravity waves in a two-layer fluid with free surface are obtained by the homotopy analysis method (HAM), and the related wave forces on a vertical cylinder are analyzed. The solution procedure of the HAM for the interfacial wave model with rigid upper surface is further developed to consider the free surface boundary. And forces of nonlinear interfacial periodic waves are estimated by both the classical and modified Morison equations. It is found that the estimated wave forces by the classical Morison equation are more conservative than those by the modified Morison’s formula, and the relative error between the total inertial forces calculated by these two kinds of Morison’s formulae remains over 25% for most cases unless the upper and lower layer depths are both large enough. It demonstrates that the convective acceleration neglected in the classical Morison equation is rather important for inertial force exerted by not only internal solitary waves but also interfacial periodic waves. All of these should further deepen our understanding of internal periodic wave forces on a vertical marine riser.

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具有自由表面边界条件的两层流体中圆柱桩上的完全非线性界面周期波力
在完全非线性势流理论的框架下,利用同伦分析方法,得到了自由表面两层流体中界面周期重力波的级数解,并分析了作用在垂直圆柱体上的相关波力。进一步发展了考虑自由面边界的刚性上表面界面波模型的HAM求解过程。用经典Morison方程和修正Morison方程对非线性界面周期波的力进行了估计。结果表明,经典Morison方程所估计的波浪力比修正Morison公式所估计的波浪力更保守,除非上下两层深度都足够大,否则两种Morison公式所计算的总惯性力的相对误差在大多数情况下保持在25%以上。证明了在经典Morison方程中被忽略的对流加速度对内孤立波和界面周期波施加的惯性力都是相当重要的。所有这些都应该进一步加深我们对垂直海洋立管上的内部周期性波浪力的理解。
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来源期刊
CiteScore
11.50
自引率
19.70%
发文量
224
审稿时长
29 days
期刊介绍: The Journal of Ocean Engineering and Science (JOES) serves as a platform for disseminating original research and advancements in the realm of ocean engineering and science. JOES encourages the submission of papers covering various aspects of ocean engineering and science.
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