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首页> 外文期刊>Computers & Fluids >Wave spectral modeling of multidirectional random waves in a harbor through combination of boundary integral of Helmholtz equation with Chebyshev point discretization
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Wave spectral modeling of multidirectional random waves in a harbor through combination of boundary integral of Helmholtz equation with Chebyshev point discretization

机译:Helmholtz方程边界积分与Chebyshev点离散化相结合的多方向随机波波谱建模

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摘要

A mathematical model is presented to predict the wave spectrum in a complex geometry harbor domain due to the diffraction of multidirectional random waves propagating through entrance of the harbor from the open sea. An accurate description of the harbor geometry, bathymetry and an incident wave spectrum are required. The solution of Helmholtz equation in the bounded and unbounded region is obtained by 2-D boundary integral method with the consideration of partial reflection and corner point approximation. Moreover, the Chebyshev point discretization is applied on boundary of the harbor to improve the accuracy of the numerical scheme. The principle of superposition is adopted to simulate the directional random waves based on the solution of monochromatic incident waves. The form of Mitsuyasu's frequency spectrum was utilized for the random wave simulation. The wave spectra for multidirectional random waves are analyzed at various recorder stations in the Pohang New Harbor (PNH). Comparison of simulation results with in situ measurement data recorded at various recorder observatories in the PNH demonstrates the feasibility and accuracy of our proposed method. After this study, we analyzed the wave height distribution in the whole PNH domain. Based on the simulation results, some tactic has been introduced to reduce the wave amplitude in the PNH. Our primary results confirm that present numerical model is accurate and flexible to implement on various real harbors to predict the multidirectional random wave diffraction. (C) 2014 Elsevier Ltd. All rights reserved.
机译:提出了一个数学模型来预测复杂几何形状港口域中的波谱,这是由于多方向随机波从公海通过港口的入口传播而产生的衍射所致。需要准确描述港口的几何形状,水深和入射波谱。考虑到部分反射和角点近似,通过二维边界积分法获得有界和无界区域中的亥姆霍兹方程的解。此外,将切比雪夫点离散化应用于港口边界以提高数值方案的准确性。在单色入射波解的基础上,采用叠加原理对定向随机波进行了仿真。 Mitsuyasu频谱的形式用于随机波仿真。在浦项新港(PNH)的各个记录仪站分析了多向随机波的频谱。将模拟结果与在PNH的各个记录仪观测站记录的现场测量数据进行比较,证明了我们提出的方法的可行性和准确性。经过这项研究,我们分析了整个PNH域中的波高分布。根据仿真结果,引入了一些策略来减小PNH中的波幅。我们的主要结果证实,当前的数值模型是准确,灵活的,可以在各种实际港口上实施以预测多方向随机波衍射。 (C)2014 Elsevier Ltd.保留所有权利。

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