论文标题

使用光谱方法泄漏的波浪表征

Leaky wave characterisation using spectral methods

论文作者

Georgiades, Evripides, Lowe, Michael J. S., Craster, Richard V.

论文摘要

泄漏的波是一类重要的波浪,特别是用于沿着嵌入另一种介质内的结构的引导波;波动中的不匹配通常会导致从波导或界面泄漏到介质中,从而减弱了引导波。对于泄漏波的理论解决方案的准确鉴定是对非破坏性评估检查技术所需的模式和频率选择的关键要求。我们选择一个典型的研究:两侧流体的弹性波导。从历史上看,泄漏的波是通过与条件问题或数值方法“与无限溶液呈指数增长相斗争的数值方法的扎根方法鉴定的。通过构建光谱搭配方法,我们显示如何将其调整以找到指数增长的溶液,即泄漏波,从而导致准确,快速和有效地识别其分散性能。所需的关键概念是在流体区域中进行的映射,该映射允许在无穷大的物理溶液中呈指数生长,同时映射的数值设置衰减。我们通过研究浸入两种不同流体之间的弹性波导中的泄漏的羔羊波来说明这一点,并使用市售软件分散来验证这一点。

Leaky waves are an important class of waves, particularly for guiding waves along structures embedded within another medium; a mismatch in wavespeeds often leads to leakage of energy from the waveguide, or interface, into the medium, which consequently attenuates the guided wave. The accurate and efficient identification of theoretical solutions for leaky waves is a key requirement for the choices of modes and frequencies required for non-destructive evaluation inspection techniques. We choose a typical situation to study: an elastic waveguide with a fluid on either side. Historically, leaky waves are identified via root-finding methods that have issues with conditioning, or, numerical methods` that struggle with the exponential growth of solutions at infinity. By building upon a spectral collocation method, we show how it can be adjusted to find exponentially growing solutions, i.e. leaky waves, leading to an accurate, fast and efficient identification of their dispersion properties. The key concept required is a mapping, in the fluid region, that allows for exponential growth of the physical solution at infinity, whilst the mapped numerical setting decays. We illustrate this by studying leaky Lamb waves in an elastic waveguide immersed between two different fluids and verify this using the commercially available software Disperse.

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