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A generalized second-order 3D theory for coupling multidirectional wave propagation from a numerical model to a physical model. Part Ⅰ: Derivation, implementation and model verification

机译:一种广义二阶3D理论,用于从数值模型到物理模型的多向波传播。第Ⅰ部分:推导,实施和模型验证

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摘要

Numerical and physical modeling are the two main tools available for predicting the influence of water waves on coastal or offshore structures. Both models have their strengths and weaknesses. An integrated use of numerical and physical modeling which exploits their advantages can provide an optimal description of full-scale, realistic engineering problems. In this series of two papers, we report on a generalized three-dimensional (3D) deterministic coupling theory for multidirectional nonlinear wave propagation from a numerical model to a physical model up to second order. In this work, the second-order coupling theory developed by [Z. Yang, S. Liu, H.B. Bingham and J. Li, 2014a. Second-order coupling of numerical and physical wave tanks for 2D irregular waves. Part I Formulation, implementation and numerical properties. Coast. Eng. 92, 48-60] and the ad hoc unified wave generation theory developed by [H. Zhang, H.A., Schaffer, K.P., Jakobsen, 2007. Deterministic combination of numerical and physical coastal wave models. Coast. Eng. 54, 171-186.] have been extended to include the coupling between multidirectional nonlinear waves. In part I of this article series, the full second-order 3D coupling theory for multidirectional nonlinear waves is been described in detail. A novel generalized fully nonlinear motion boundary equation has been derived, which allows the interface between the numerical and physical wave domains to be a 3D arbitrarily shaped wavemaker system. The corresponding 3D wave coupling equation is given for I-, L-, and O-shaped wavemaker layouts. The new formulation is presented in a unified form for an arbitrarily shaped layout of planar wavemakers, and covers both hinged and piston wavemaker types. For the second-order dispersive correction of the paddle stroke, the super-harmonic and sub-harmonic wave-wave interactions have been taken into account. For practical implementation, a typical discretization method for the 3D coupling equations is derived by considering the case of the I-shaped piston wavemaker. The new 3D coupling equations are solved by a combined five-point Lagrange interpolation and the fourth-order Runge-Kutta scheme. Numerical evaluations of the implementation have been conducted by considering a theoretical second-order unidirectional wave field over a range of spatial and time resolutions. The results thus obtained indicate that the proposed discretization scheme is accurate and effective. In addition, the precision of the discrete scheme is observed to be closely related to the spatial and temporal resolution. A separate experimental validation of the theory is presented in Part II.
机译:数值和物理建模是预测水波对沿海或海上结构的影响的两个主要工具。两种模型都有他们的优势和缺点。综合使用数值和物理建模,利用其优势可以提供满量程,现实工程问题的最佳描述。在这一系列的两篇论文中,我们报告了从数值模型到第二阶的物理模型的多向非线性波传播的广义三维(3D)确定性耦合理论。在这项工作中,[z.的二阶耦合理论杨,刘,H.B. Bingham和J. Li,2014A。用于2D不规则波的数值和物理波槽的二阶耦合。第一部分制定,实施和数值属性。海岸。 eng。 92,48-60]和AD HOC统一波浪生成理论由[H.张,H.A.,Schaffer,K.P.,Jakobsen,2007.数值和物理沿海波模型的确定性组合。海岸。 eng。 54,171-186。]已经扩展到包括多向非线性波之间的耦合。在本文系列的第一部分中,详细描述了用于多向非线性波的完整二阶3D耦合理论。推导出一种新的广义完全非线性运动边界方程,其允许数值和物理波域之间的界面成为3D任意形状的波浪制造系统。给出了相应的3D波耦合方程,用于I-,L-和O形波浪制布。新配方以统一的形式呈现,用于平面波动仪的任意形状的布局,并涵盖铰接和活塞波浪制作类型。对于桨式冲程的二阶分散校正,已经考虑了超级谐波和子谐波波相互作用。为了实际实现,通过考虑I形活塞波浪示波器的情况来导出3D耦合方程的典型离散化方法。新的3D耦合方程由组合的五点拉格朗日插值和第四阶runge-Kutta方案解决。已经通过考虑在一系列空间和时间分辨率范围内的理论二阶单向波场进行实施方式进行的数值评估。由此获得的结果表明,拟议的离散化方案是准确的,有效的。此外,观察到离散方案的精度与空间和时间分辨率密切相关。第II部分介绍了该理论的单独实验验证。

著录项

  • 来源
    《Coastal engineering》 |2021年第4期|103864.1-103864.15|共15页
  • 作者单位

    Tianjin Res Inst Water Transport Engn Natl Engn Lab Port Hydraul Construct Technol MOT Tianjin 300456 Peoples R China;

    Dalian Univ Technol State Key Lab Coastal & Offshore Engn Dalian 116023 Peoples R China;

    Hainan Univ Coll Civil Engn & Architecture Haikou 570208 Hainan Peoples R China;

    Tech Univ Denmark Dept Mech Engn DK-2800 Lyngby Denmark;

    Tianjin Res Inst Water Transport Engn Natl Engn Lab Port Hydraul Construct Technol MOT Tianjin 300456 Peoples R China;

    Tianjin Res Inst Water Transport Engn Natl Engn Lab Port Hydraul Construct Technol MOT Tianjin 300456 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Generalized coupling theory; Multidirectional waves; Second-order 3D theory; Numerical model; Physical model;

    机译:广义耦合理论;多向波;二阶3D理论;数值模型;物理模型;
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