Kaltenbacher Barbara, Kaltenbacher Manfred, Sim Imbo
Institute of Applied Analysis, Alpen-Adria-Universität Klagenfurt, Austria.
J Comput Phys. 2013 Feb 15;235(100):407-422. doi: 10.1016/j.jcp.2012.10.016.
We consider the second order wave equation in an unbounded domain and propose an advanced perfectly matched layer (PML) technique for its efficient and reliable simulation. In doing so, we concentrate on the time domain case and use the finite-element (FE) method for the space discretization. Our un-split-PML formulation requires four auxiliary variables within the PML region in three space dimensions. For a reduced version (rPML), we present a long time stability proof based on an energy analysis. The numerical case studies and an application example demonstrate the good performance and long time stability of our formulation for treating open domain problems.
我们考虑无界域中的二阶波动方程,并提出一种先进的完全匹配层(PML)技术用于其高效且可靠的模拟。在此过程中,我们专注于时域情形,并使用有限元(FE)方法进行空间离散化。我们的非分裂PML公式在三维空间的PML区域内需要四个辅助变量。对于简化版本(rPML),我们基于能量分析给出了长时间稳定性证明。数值案例研究和一个应用示例展示了我们的公式在处理开放域问题时的良好性能和长时间稳定性。