A Numerical Study of the Hydrodynamics of an Offshore Fish Farm Using REEF3D

G. Wang, T. Martin, Liu-yi Huang, H. Bihs
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引用次数: 5

Abstract

In this paper, the CFD framework REEF3D is utilized to investigate the hydrodynamics of a large offshore fish farm in waves. The solver consists of a rigid body dynamics solver for the frame structure coupled to a fluid solver including the shielding effects of the nets. The solver and the grid independence are validated using a 2D numerical wave tank, a free decay test, and a study of the wave loads on a rigid net panel. Then, the effects of regular wave parameters, the thickness of the vertical outer columns of the structure, and varies aspect ratios on the loads, response and maximum mooring tensions are investigated. It is concluded that the response is sensitive to the wave period rather than the wave height and that the net system accounts for about 30% of the total drag but does not influence the structural response to a larger extend. The effect of the aspect ratio on the hydrodynamics is more distinct than that of the frame thickness especially. Thus, the first step towards a systemic evaluation of the importance of different structural parts of an offshore fish cage for the expected responses is presented in this paper.
基于REEF3D的近海养鱼场水动力数值研究
本文利用CFD框架REEF3D对某大型近海养鱼场波浪中的水动力特性进行了研究。求解器包括框架结构的刚体动力学求解器和考虑网架屏蔽效应的流体求解器。通过二维数值波浪槽、自由衰减试验和刚性网板波浪荷载研究,验证了求解器和网格独立性。然后,研究了规则波参数、结构竖向外柱厚度和不同宽高比对荷载、响应和最大系泊张力的影响。结果表明,结构响应对波浪周期而非波高较为敏感,净体系占总阻力的30%左右,但对结构响应的影响不大。宽高比对流体力学的影响比机架厚度的影响更为明显。因此,本文提出了对海上鱼笼不同结构部分对预期响应的重要性进行系统评估的第一步。
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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