San Mauro Cilento(意大利)对面海岸地区的波浪场和近岸洋流

Q3 Engineering
F. Palleschi, Benedetta Iele, M. Tamburrino
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引用次数: 1

摘要

在本文中,为了在代表真实沿海地区复杂形态的计算域中模拟近岸洋流,我们使用了一个基于完全非线性Boussinesq方程(FNBE)的逆变积分形式的模型。连续性方程的反变积分形式,其中不存在Christoffel符号,不包含色散项。采用混合有限体积有限差分格式对Boussinesq方程组进行了数值求解。非线性浅水方程组(NSWE)积分形式的弱解的不连续性是波浪破碎的表现形式。根据文献中的测试案例,验证了所提出的模型在高度失真网格上正确模拟波列传播的能力。使用所提出的模型,对存在T型丁坝系统的圣毛罗-西伦托(意大利)对面沿海地区的波浪场和近岸流进行了数值模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wave Fields and Nearshore Currents in the Coastal Region Opposite San Mauro Cilento (Italy)
In this paper in order to simulate nearshore currents in computational domains representing the complex morphology of real coastal regions we use a model based on a contravariant integral form of the fully nonlinear Boussinesq equations (FNBE). The contravariant integral form, in which Christoffel symbols are absent, of the continuity equation does not contain the dispersive term. The Boussinesq equation system is numerically solved by a hybrid finite volume-finite difference scheme. The wave breaking is represented by discontinuities of the weak solution of the integral form of the nonlinear shallow water equations (NSWE). The capacity of the proposed model to correctly simulate the wave train propagation on a highly distorted grid is verified against test case present in the literature. The simulation of wave fields and nearshore currents in the coastal region, opposite San Mauro Cilento (Italy) in presence of a system of T-head groins, is numerically reproduced by using the proposed model.
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来源期刊
WSEAS Transactions on Fluid Mechanics
WSEAS Transactions on Fluid Mechanics Engineering-Computational Mechanics
CiteScore
1.50
自引率
0.00%
发文量
20
期刊介绍: WSEAS Transactions on Fluid Mechanics publishes original research papers relating to the studying of fluids. We aim to bring important work to a wide international audience and therefore only publish papers of exceptional scientific value that advance our understanding of this particular area. The research presented must transcend the limits of case studies, while both experimental and theoretical studies are accepted. It is a multi-disciplinary journal and therefore its content mirrors the diverse interests and approaches of scholars involved with multiphase flow, boundary layer flow, material properties, wave modelling and related areas. We also welcome scholarly contributions from officials with government agencies, international agencies, and non-governmental organizations.
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