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压力对充液管道中螺旋导波能量速度的影响。

Effect of pressurization on helical guided wave energy velocity in fluid-filled pipes.

作者信息

Dubuc Brennan, Ebrahimkhanlou Arvin, Salamone Salvatore

机构信息

Smart Structures Research Laboratory (SSRL), Dept. of Civil, Architectural and Environmental Engineering, University of Texas at Austin, 10100 Burnet Rd., Bldg. 24, Austin, TX 78758, USA.

出版信息

Ultrasonics. 2017 Mar;75:145-154. doi: 10.1016/j.ultras.2016.11.013. Epub 2016 Nov 29.

Abstract

The effect of pressurization stresses on helical guided waves in a thin-walled fluid-filled pipe is studied by modeling leaky Lamb waves in a stressed plate bordered by fluid. Fluid pressurization produces hoop and longitudinal stresses in a thin-walled pipe, which corresponds to biaxial in-plane stress in a plate waveguide model. The effect of stress on guided wave propagation is accounted for through nonlinear elasticity and finite deformation theory. Emphasis is placed on the stress dependence of the energy velocity of the guided wave modes. For this purpose, an expression for the energy velocity of leaky Lamb waves in a stressed plate is derived. Theoretical results are presented for the mode, frequency, and directional dependent variations in energy velocity with respect to stress. An experimental setup is designed for measuring variations in helical wave energy velocity in a thin-walled water-filled steel pipe at different levels of pressure. Good agreement is achieved between the experimental variations in energy velocity for the helical guided waves and the theoretical leaky Lamb wave solutions.

摘要

通过对与流体相邻的受应力板中的泄漏兰姆波进行建模,研究了压力应力对薄壁充液管道中螺旋导波的影响。流体压力会在薄壁管道中产生环向应力和纵向应力,这对应于平板波导模型中的双轴面内应力。通过非线性弹性和有限变形理论来考虑应力对导波传播的影响。重点在于导波模式的能量速度对应力的依赖性。为此,推导了受应力板中泄漏兰姆波能量速度的表达式。给出了关于能量速度随应力的模式、频率和方向相关变化的理论结果。设计了一个实验装置,用于测量不同压力水平下薄壁充水钢管中螺旋波能量速度的变化。螺旋导波的能量速度实验变化与理论泄漏兰姆波解之间取得了良好的一致性。

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