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Finite element simulation of leaky surface wave propagation excited by a line-focsed transduced

机译:线聚焦换能器激发的泄漏面波传播的有限元模拟

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The use of a PVDF line-focused ultrasonic transducer with a large aperture makes possible to measure the velocities of the leaky Rayleigh, surface SV and creeping waves in time domain [1-3]. The velocities and attenuation of these waves are affected by deviation from the perfect plance, namely surface roughness, waviness, etc. They also depend on the subsruface structure. Theoretical analyses of wave propagation are possible for simple geometries and subsurface structures, however, numerical analyses of wave motion are necessary to solve many real problems. The finite element modeling of ultrasonic wave propagation has been applied for solids [4-6] and for the axisymmetric solid/fluid interface [7]. This paper gives a finite element simulation of plane leaky surface wave propagation at the solid/liquid interface excited by line-focused transducer.
机译:具有大孔径的PVDF线聚焦超声换能器的使用使得可以测量时域中泄漏的瑞利,表面SV和蠕变波的速度[1-3]。这些波的速度和衰减受完美平面偏离的影响,即表面粗糙度,波纹度等。它们还取决于子表面结构。对于简单的几何形状和地下结构,波传播的理论分析是可能的,但是,波运动的数值分析对于解决许多实际问题是必需的。超声波传播的有限元建模已应用于固体[4-6]和轴对称固体/流体界面[7]。本文给出了线聚焦换能器激发的平面泄漏表面波在固/液界面处传播的有限元模拟。

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