ON THE BEHAVIOR OF A TETHERED CYLINDER ARRAY UNDER IRREGULAR WAVES

Matteo Lorenzo, Paolo Pezzutto, Filippo De Lillo, Piero Ruol, Federico Bosia, Miguel Onorato
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Abstract

An interesting option for coastal wave attenuation can be provided by tethered floating breakwaters (see e.g. Agerton, 1976 and Seymour, 1979). This type of structure can be designed to be effective, while determining a very small impact on the environment (Dai, 2018). In principle, a regular lattice of reversed pendula (i.e. the breakwater) can be seen as an approximation to a mechanical metamaterial with interesting properties related to its periodic structure. The tethered floating breakwater we are studying has been designed as a finite lattice of submerged inverse pendula. The objective is to determine the efficiency of a regular two-dimensional lattice of spherical pendula. To isolate the one-dimensional behavior, a single array of reversed cylindrical pendula anchored to the bottom and excited by long crested waves has been tested.
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不规则波作用下系留圆柱阵列的性能研究
岸波衰减的一个有趣的选择可以由系绳浮动防波堤提供(参见Agerton, 1976年和Seymour, 1979年)。这种类型的结构可以设计成有效的,同时确定对环境的影响非常小(Dai, 2018)。原则上,反摆的规则晶格(即防波堤)可以被视为近似于具有与其周期结构相关的有趣性质的机械超材料。所研究的系留式浮式防波堤被设计为沉水反摆的有限格。目的是确定球面摆的规则二维晶格的效率。为了隔离这种一维行为,我们测试了一组倒置的圆柱形摆,这些摆固定在底部,并受到长波峰波的激励。
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