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Numerical simulations of the guided elastic waves generated by laser-induced AS and ES in hollow cylinders

机译:空心圆柱体中激光诱导的AS和ES产生的引导弹性波的数值模拟

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Numerical analyses are presented for the laser-generated guided elastic waves in hollow cylinders. The transient waveforms excited by the ablation source (AS) and the evaporation source (ES), due to the ablation and the evaporation of oil induced by impinging laser pulse, are calculated numerically by modeling different time-dependencies, i.e. the former is considered as Heaviside step function and the latter is assumed to be Dirac Delta function. Instead of using classical integral transform, the method of eigen-function expansion is employed, by which time-dependent displacement at the outer surface of hollow cylinders will be expressed by summation of longitudinal and flexural type modes. This formula is particularly suitable for analyses of generation efficiency of each guided elastic mode. And the waveform of total radial displacements were analyzed using a short-time Fourier transform (STFT).
机译:对空心圆柱体内激光产生的弹性波进行了数值分析。通过建模不同的时间相关性,通过数值计算由于激光源的消融和蒸发而产生的由消融源(AS)和蒸发源(ES)激发的瞬态波形,即前者被认为是Heaviside阶跃函数,后者假定为Dirac Delta函数。代替使用经典的积分变换,本征函数展开方法被采用,通过该方法,中空圆柱体外表面的时间相关位移将通过纵向和弯曲型模式的总和来表示。该公式特别适用于分析每个引导弹性模式的发电效率。然后使用短时傅立叶变换(STFT)分析了总径向位移的波形。

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