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Effect of an internal open crack on pipes wave propagation

机译:内部开放裂纹对管道波传播的影响

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Stress guided waves in the sonic and ultrasonic regime are acknowledged as a powerful tool to inspect pipes in a non-invasive manner. A key point of the inspection procedure is related to the dispersive behavior of guided waves, that for a given pipe is defined by the so-called dispersion curves. Such behavior, is generally predicted by means of analytical formulations. However, when the geometry of the pipe cross-section is not axially symmetric, such as in the presence of an open internal crack running along the pipe length, analytical formulations fail. Here, the computation of the guided waves properties for such a scenario is addressed via a Semi Analytical Finite Element (SAFE) formulation in which the open crack is modeled at the mesh level. Different crack depths are considered and their effect on the waves dispersion curves are highlighted. The results could be of interest in pipeline inspection and monitoring.
机译:Sonic和超声波制度的应力导向波被认为是一种以非侵入方式检查管道的强大工具。检查过程的关键点与引导波的分散行为有关,对于给定管道的分散行为由所谓的色散曲线限定。通常通过分析制剂预测这种行为。然而,当管道横截面的几何形状不轴对称时,例如在存在沿管长度的开口内裂纹的存在下,分析制剂失效。这里,通过半分析有限元(安全)制构来解决这种情况的导向波属性的计算,其中开口裂纹在网格级别进行了建模。考虑不同的裂缝深度,突出显示它们对波色散曲线的影响。结果可能对管道检查和监测感兴趣。

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