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Numerical modeling of elastic wave propagation in prestressed helical waveguides with the safe method

机译:预应力螺旋波导弹性波数值模拟的安全方法

摘要

Guided waves are used to control large components such as plates and tubes. They have the advantage to spread over long distances with little loss of energy. Because of the dispersive and multimodal behavior of guided waves, simulation becomes a very helpful tool for a proper analysis of these tests. The aim of this work is to model the elastic waves propagation in helical waveguides subjected to axial load. This study requires the development of elastodynamics equations in a helical coordinate system, which is translationally invariant along the helix centerline. The semi-analytical finite element (SAFE) method may then be applied, reducing the mesh to the section of the guide (two dimensional). The eigen-problem can be solved by fixing the wavenumber or frequency. Moreover, the computation of the prestressed state is solved by a 2D model based on the asymptotic expansion in which the invariance of the helical structure is taken into account. Results for single straight and helical wires are first computed in order to validate the approach. A dispersion analysis for a seven wire strand with simplified contact conditions is then performed.
机译:导波用于控制大型组件,例如板和管。它们的优点是可以分散很长的距离,而几乎没有能量损失。由于导波的色散和多峰行为,模拟成为正确分析这些测试的非常有用的工具。这项工作的目的是对在轴向载荷下在螺旋形波导中传播的弹性波进行建模。这项研究要求在螺旋坐标系中发展弹性动力学方程,该坐标系沿螺旋中心线平移不变。然后可以应用半分析有限元(SAFE)方法,从而减小网格到导向部分的截面(二维)。本征问题可以通过固定波数或频率来解决。而且,通过基于渐近扩展的二维模型来解决预应力状态的计算,其中考虑了螺旋结构的不变性。首先计算单条直线和螺旋线的结果,以验证该方法。然后对具有简化接触条件的七线绞线进行色散分析。

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