WaveMIMO Methodology: Numerical Wave Generation of a Realistic Sea State

Q4 Chemical Engineering
B. N. Machado, P. Oleinik, Eduardo de Paula Kirinus, E. D. Santos, L. Rocha, M. N. Gomes, J. Conde, L. Isoldi
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引用次数: 10

Abstract

This paper presents a methodology that allows the numerical simulation of realistic sea waves, called WaveMIMO methodology, which is based on the imposition of transient discrete data as prescribed velocity on a finite volume computational model developed in Fluent software. These transient data are obtained by using the spectral wave model TOMAWAC, where the wave spectrum is converted into a series of free surface elevations treated and processed as wave propagation velocities in the horizontal (x) and vertical (z) directions. The processed discrete transient data of wave propagation velocity are imposed as boundary conditions of a wave channel in Fluent, allowing the numerical simulation of irregular waves with realistic characteristics. From a case study that reproduces the sea state occurring on March 31st, 2014, in Ingleses Beach, in the city of Florianopolis, state of Santa Catarina, Brazil, it was concluded that the WaveMIMO methodology can properly reproduce realistic conditions of a sea state. In sequence, the proposed methodology was employed to numerically simulate the incidence of irregular realistic waves over an oscillating water column (OWC) wave energy converter (WEC). From these results, the WaveMIMO methodology has proved to be a promising technique to numerically analyze the fluid-dynamic behavior of WECs subjected to irregular waves of realistic sea state on any coastal region where the device can be installed.
WaveMIMO方法:真实海况的数值波浪生成
本文提出了一种允许对现实海浪进行数值模拟的方法,称为WaveMIMO方法,该方法基于在Fluent软件中开发的有限体积计算模型上按规定速度施加瞬态离散数据。这些瞬态数据是通过使用谱波模型TOMAWAC获得的,其中波浪谱被转换成一系列自由表面高度,并作为波在水平(x)和垂直(z)方向的传播速度进行处理。在Fluent中,将处理后的离散瞬态波传播速度数据作为通道的边界条件,实现了具有真实特征的不规则波的数值模拟。通过对2014年3月31日发生在巴西圣卡塔琳娜州弗洛里亚诺波利斯市Ingleses海滩的海况进行的案例研究,我们得出结论,WaveMIMO方法可以正确地再现海况的真实情况。利用该方法对振荡水柱(OWC)波能转换器(WEC)上的不规则真实波入射进行了数值模拟。从这些结果来看,WaveMIMO方法已被证明是一种很有前途的技术,可以在任何沿海地区安装该设备,以数值分析受实际海况不规则波浪影响的WECs流体动力学行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied and Computational Mechanics
Applied and Computational Mechanics Engineering-Computational Mechanics
CiteScore
0.80
自引率
0.00%
发文量
10
审稿时长
14 weeks
期刊介绍: The ACM journal covers a broad spectrum of topics in all fields of applied and computational mechanics with special emphasis on mathematical modelling and numerical simulations with experimental support, if relevant. Our audience is the international scientific community, academics as well as engineers interested in such disciplines. Original research papers falling into the following areas are considered for possible publication: solid mechanics, mechanics of materials, thermodynamics, biomechanics and mechanobiology, fluid-structure interaction, dynamics of multibody systems, mechatronics, vibrations and waves, reliability and durability of structures, structural damage and fracture mechanics, heterogenous media and multiscale problems, structural mechanics, experimental methods in mechanics. This list is neither exhaustive nor fixed.
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