Evaluation of Flow Field in the Layouts of Cross-Shaped Artificial Reefs

Yanli Tang, Qingxi Hu, Xinxin Wang, F. Zhao, Liu-yi Huang, Tao Xie
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引用次数: 2

Abstract

Artificial reefs (ARs) are purposely submerged in natural aquatic environments to provide additional habitat for fish. The reasonable layout of ARs on the sea floor can effectively enhance and support important marine species. This research involves a three-dimensional numerical simulation to analyze the flow effect of three types of AR layouts based on computational fluid dynamics. Through numerical simulation of the flow past the reefs, we can determine the scale of the upwelling and back-eddy flow. Based on the simulation data, the rational transverse distance between two cross-shaped artificial reefs (CSARs) is 6L (L is the length of the single reef), which is used to design the layouts of CSARs. Five indicators have been used to evaluate the flow field effect of these three layouts. According to the comparison of five indications for different layouts of CSAR, it is more reasonable to divide the AR layouts into two categories: upwelling layout and back eddy layout. Finally, the sphere of influence of the AR layouts on the fisheries resource is also discussed.
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十字形人工鱼礁布置流场评价
人工鱼礁(ARs)被有意地淹没在自然水生环境中,为鱼类提供额外的栖息地。合理的海底生物保护区布局可以有效地增强和支持重要的海洋物种。本文采用基于计算流体力学的三维数值模拟方法,分析了三种AR布局的流动效果。通过对礁体流动的数值模拟,可以确定上升流和后涡流的规模。根据仿真数据,两个十字形人工鱼礁之间的合理横向距离为6L (L为单个鱼礁的长度),用于设计人工鱼礁的布局。采用5个指标对三种布局的流场效果进行了评价。通过对不同布局的五种指标的比较,将不同布局划分为上升流布局和后涡布局两类更为合理。最后,讨论了AR布局对渔业资源的影响范围。
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