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Finite element method based computational time reversal in elastodynamics: Refocusing, reconstruction and its numerical sensitivity

机译:基于有限元方法的弹性动力学计算时间逆转:重新焦,重建及其数值敏感性

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In this paper, we study the accuracy and robustness of the computational time reversal approach based on the explicit finite element method for application in nondestructive testing in solids. The main goal of this paper is to find a methodology for correct and accurate reconstruction of the original source time history. For numerical modeling of frontal (forward) and reverse (backward) problems of elastic wave propagation, we use the finite element method and explicit time integration with the lumped mass matrix. The suggested methodology is applicable in each finite element open source or commercial software. A special attention is paid to prescription of boundary conditions/loading for the reverse problem for accurate reconstruction of time history of the original source. For evaluation of the reconstruction quality, we suggest certain cost functions. Based on several numerical tests, we show effects of prescription of boundary conditions/loading in time reversal, effect of mesh size and time step size, an unknown obstacle, a number of sources, and environmental disturbance (noise) on the correctness of reconstruction of the original source.
机译:本文研究了基于明确有限元方法的计算时间反转方法的准确性和鲁棒性,以便在固体中非破坏性测试中的应用。本文的主要目标是找到一种正确和准确地重建原始源时间历史的方法。对于弹性波传播的正面(前进)和反向(向后)问题的数值建模,我们使用有限元方法和与集总质量矩阵的明确时间集成。建议的方法适用于每个有限元开源或商业软件。为准确地重建原始来源的时间历史,特别关注边界条件/装载的处方。为了评估重建质量,我们建议某些成本职能。基于几种数值测试,我们显示了边界条件的处方/加载在时间逆转,网格尺寸和时间步长,未知障碍物,许多来源和环境干扰(噪声)的影响原始来源。

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