Fluctuation characteristics and topological interface states in the quasi-periodic structures of shallow-water waves

IF 2.5 3区 工程技术
Xue Guan, Bo-ya Xiao, Yu Liu, Meng Chen
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引用次数: 0

Abstract

Compared with periodic structures, quasi-periodic structures have superior band gap properties and topological interface states. In this paper, a one-dimensional quasi-periodic Fibonacci water wave metamaterial model that can be used to apply quasi-periodic structures to shallow-water wave systems is presented. The fluctuation characteristics of periodic and quasi-periodic structures are examined using finite element numerical calculations based on the shallow-water wave equation. The research results show that the band characteristics of quasi-periodic structures are complex, enabling flexible control of the propagation of shallow-water waves. Furthermore, the mirror-symmetrical design of Fibonacci quasi-periodic water wave metamaterials was created to engineer the topological interface states in shallow-water wave systems, ultimately achieving successful localization of wave energy. This research will greatly enrich our understanding of topology, expand the potential applications of quasi-periodic structures, and provide new insights for manipulating water waves and harvesting energy.

浅水波准周期结构中的涨落特征和拓扑界面态
与周期结构相比,准周期结构具有更好的带隙性质和拓扑界面状态。本文提出了一种一维准周期斐波那契水波超材料模型,该模型可用于浅水波系统的准周期结构。基于浅水波动方程,采用有限元数值计算方法研究了周期和准周期结构的波动特性。研究结果表明,准周期结构的频带特性复杂,可以灵活控制浅水波的传播。此外,创建了斐波那契准周期水波超材料的镜像对称设计,以设计浅水波系统的拓扑界面状态,最终实现了波能的成功局域化。这项研究将极大地丰富我们对拓扑学的理解,扩展准周期结构的潜在应用,并为操纵水波和收集能量提供新的见解。
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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来源期刊
自引率
12.00%
发文量
2374
审稿时长
4.6 months
期刊介绍: Journal of Hydrodynamics is devoted to the publication of original theoretical, computational and experimental contributions to the all aspects of hydrodynamics. It covers advances in the naval architecture and ocean engineering, marine and ocean engineering, environmental engineering, water conservancy and hydropower engineering, energy exploration, chemical engineering, biological and biomedical engineering etc.
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