Longitudinal wave propagation in an elastic cylinder embedded in a viscoelastic fluid

Mohamed Aninou, Adil El Baroudi, Jean Yves Le Pommellec
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Abstract

Abstract A novel analytical investigation of longitudinal wave propagation in an elastic cylinder embedded in a viscoelastic fluid is proposed. The Maxwell model is used to describe the viscoelastic fluid behavior. With appropriate boundary conditions, a complex dispersion equation of longitudinal wave has been established. The aim of this paper is to study the effect of the fluid rheological properties on the longitudinal wave characteristics (attenuation and velocity). It is shown that the attenuation is the sum of a viscous and non viscous component. The viscosity induced attenuation is predominant at low frequencies. On the other hand, the effect of the liquid amount and elastic cylinder radius on the attenuation and velocity are studied. A critical normalized liquid thickness is highlighted. Beyond this critical value, the influence of the outer boundary condition can be neglected. At last, among other interesting phenomena, it is highlighted that if the Deborah number increases, the attenuation decreases. This variation characterize a stiffening of the viscoelastic medium. In addition, the obtained results show that the viscosity measurement should be performed at low frequencies using small elastic cylinder radius. Accordingly, these investigations are novel and can be applied in geophysics, food industry, medicine, non-destructive testing of materials, design and development of fluid sensors.
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纵波在嵌入粘弹性流体中的弹性圆柱体中的传播
摘要提出了一种新的纵波在嵌入粘弹性流体中的弹性圆柱体中的传播解析方法。麦克斯韦模型用于描述粘弹性流体的行为。在适当的边界条件下,建立了纵波的复色散方程。本文的目的是研究流体流变特性对纵波特性(衰减和速度)的影响。结果表明,衰减是粘性分量和非粘性分量之和。粘滞性衰减在低频下占优势。另一方面,研究了液量和弹性圆柱半径对衰减和速度的影响。一个临界归一化液体厚度被突出显示。超过这个临界值,外边界条件的影响可以忽略不计。最后,在其他有趣的现象中,强调了当波底拉数增加时,衰减减小。这种变化表现为粘弹性介质的硬化。此外,得到的结果表明,粘度测量应在低频率下进行,使用小弹性圆柱半径。因此,这些研究是新颖的,可以应用于地球物理、食品工业、医学、材料无损检测、流体传感器的设计和开发。
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来源期刊
CiteScore
3.80
自引率
9.10%
发文量
25
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