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首页> 外文期刊>Estuarine Coastal and Shelf Science >Configuration methodology for a green variety reef system (AR group) based on hydrodynamic criteria - Application to the Ria de Ares-Betanzos
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Configuration methodology for a green variety reef system (AR group) based on hydrodynamic criteria - Application to the Ria de Ares-Betanzos

机译:基于流体动力学标准的绿色品种Reef系统(AR组)的配置方法 - 应用于RIA de Ares-Betanzos的应用

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摘要

For the evolution and development of artificial reefs to attain the expected results, hydrodynamics is emerging as a key factor that must be taken analyzed in detail. In particular, thanks to the hydrodynamics of a given coastal area, suitable water circulation and velocity in the reef's interior can increase the yield and the renewal of nutrients favourable for larval settlement, along with reducing the sedimentation. This document proposes a methodology for determining the geometry of an artificial reef group adapted to the specific characteristics of the selected zone of installation, the Ría de Ares-Betanzos (NW Spain), based on hydrodynamic criteria by defining the Artificial Reef Tool (ART). The starting point of the ART tool is the existing reef model or AR unit's design –a modular construction with productive and protective features. Then a high-resolution hydrodynamic circulation model (HCM) is developed allowing the high-resolution site-specific computation of the flow pattern in the selected area. Finally, the results obtained are used as input for a hydrodynamic model for food delivery prediction (HMFDP), allowing the estimation of the food supply to each module. The results obtained lead to the definition of the geometry of the reef group.
机译:对于人工珊瑚礁的进化和发展来获得预期的结果,流体动力学被涌现为必须详细分析的关键因素。特别是,由于给定的沿海地区的流体动力学,珊瑚礁内部的合适的水循环和速度可以增加幼虫沉降有利的产量和更新的营养素,以及降低沉降。本文档提出了一种用于确定适用于所选安装区域的特定特性的人工Reef组的几何形状的方法,通过定义人工礁工具(ART)来基于流体动力学标准,RíaDeRes-Betanzos(NW Spain)。 。本领域的起点是现有的Reef型号或AR单元的设计 - 具有生产性和保护功能的模块化结构。然后开发了高分辨率的流体动力循环模型(HCM),允许在所选区域中的流动模式的高分辨率站点计算。最后,获得的结果用作食物递送预测(HMFDP)的流体动力学模型的输入,允许估计每个模块的食物供应。得到的结果导致珊瑚礁组的几何形状的定义。

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