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A simple multi-directional absorbing layer method to simulate elastic wave propagation in unbounded domains

机译:一种简单的多向吸收层方法,用于模拟弹性波在无界域中的传播

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摘要

The numerical analysis of elastic wave propagation in unbounded media may be difficult due to spurious waves reflected at the model artificial boundaries. This point is critical for the analysis of wave propagation in heterogeneous or layered solids. Various techniques such as Absorbing Boundary Conditions, infinite elements or Absorbing Boundary Layers (e.g. Perfectly Matched Layers) lead to an important reduction of such spurious reflections. In this paper, a simple absorbing layer method is proposed: it is based on a Rayleigh/Caughey damping formulation which is often already available in existing Finite Element softwares. The principle of the Caughey Absorbing Layer Method is first presented (including a rheological interpretation). The efficiency of the method is then shown through 1D Finite Element simulations considering homogeneous and heterogeneous damping in the absorbing layer. 2D models are considered afterwards to assess the efficiency of the absorbing layer method for various wave types and incidences. A comparison with the PML method is first performed for pure P-waves and the method is shown to be reliable in a more complex 2D case involving various wave types and incidences. It may thus be used for various types of problems involving elastic waves (e.g. machine vibrations, seismic waves, etc.).
机译:由于在模型人工边界处反射的杂散波,可能难以对弹性波在无边界介质中的传播进行数值分析。这一点对于分析非均质或层状固体中的波传播至关重要。诸如吸收边界条件,无限元素或吸收边界层(例如,完美匹配的层)之类的各种技术导致这种虚假​​反射的重要减少。在本文中,提出了一种简单的吸收层方法:该方法基于瑞利/库伊阻尼公式,该公式通常在现有的有限元软件中已经可用。首先介绍了Caughey吸收层法的原理(包括流变学解释)。然后,通过考虑吸收层中均质和非均质阻尼的一维有限元模拟,显示了该方法的效率。此后考虑2D模型,以评估吸收层方法对各种波浪类型和入射角的效率。首先对纯P波与PML方法进行比较,结果表明该方法在涉及各种波类型和入射角的更复杂的2D情况下是可靠的。因此,它可以用于涉及弹性波的各种类型的问题(例如,机器振动,地震波等)。

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