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Design and fabrication of artificial brain coral: Evolution principle, turbulent hydrodynamics and matter interchange

机译:人工脑珊瑚的设计与制造:演化原理、湍流流体动力学与物质互换

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摘要

This paper presents a study of the morphogenesis of brain corals based on an experimental investigation and a topological optimization method. The resistance to matter interchange was employed to allocate the optimal space for the growth of polyp colonies from the perspective of topological optimization, where the optimized structures are those of natural brain corals. Computational fluid dynamics simula-tions revealed that these complicated structures can provide shelter to protect polyps from ocean cur-rents. A reverse mold was prepared from silica gel and used to cast models from mixtures of cement and calcium carbonate, where the mixture ratio was determined based on compressive strength and bio-compatibility. Based on an acid corrosion experiment, the matter interchange capability was verified. This study also proved that the many folds in the structure of brain corals contribute to the circulation of seawater, thus maintaining the concentration of nutrients and hindering the deposition of harmful substances. This paper establishes an innovative methodology for the creation of artificial brain corals, which is important for environmental restoration. (c) 2022 Elsevier Ltd. All rights reserved.
机译:本文基于实验研究和拓扑优化方法,对脑珊瑚的形态发生进行了研究。从拓扑优化的角度出发,利用对物质交换的抗性来分配息肉菌落生长的最优空间,其中优化的结构是天然脑珊瑚的结构。计算流体动力学模拟表明,这些复杂的结构可以提供庇护所,以保护息肉免受海洋冲击。用硅胶制备反向模具,用于用水泥和碳酸钙的混合物铸造模型,其中混合物比是根据抗压强度和生物相容性确定的。基于酸腐蚀实验,验证了物质互换能力。这项研究还证明,脑珊瑚结构中的许多褶皱有助于海水的循环,从而保持营养物质的浓度并阻碍有害物质的沉积。本文建立了一种创新的人工脑珊瑚创建方法,对环境恢复具有重要意义。(c) 2022 爱思唯尔有限公司保留所有权利。

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