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首页> 外文期刊>Bulletin of the Seismological Society of America >Simulation of the planar free surface with near-surface lateral discontinuities in the finite-difference modeling of seismic motion
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Simulation of the planar free surface with near-surface lateral discontinuities in the finite-difference modeling of seismic motion

机译:地震运动有限差分建模中具有近地表横向不连续性的平面自由面的模拟

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摘要

Kristek et al. (2002) developed a technique for simulating the planar free surface in the 3D fourth-order staggered-grid finite-difference (FD) modeling of seismic motion. The technique is based on (1) explicit application of zero values of the stress-tensor components at the free surface and (2) adjusted FD approximations (AFDAs) to vertical derivatives at and near the free surface. The technique was shown to be more accurate and efficient than the standard stress-imaging technique in ID models.In this study, we tested accuracy of the AFDA technique in media with lateral material discontinuities reaching the free surface. We compared the FD synthetics with synthetics calculated by the standard finite-element (FE) method because the FE method naturally and sufficiently accurately satisfies the boundary conditions at the free surface and the traction interface continuity conditions at internal material discontinuities. The comparison showed a very good level of accuracy of the AFDA technique. We also demonstrated the very good sensitivity of our FD modeling to different positions of the same physical model in the spatial FD grid.
机译:Kristek等。 (2002年)开发了一种用于在地震运动的3D四阶交错网格有限差分(FD)建模中模拟平面自由表面的技术。该技术基于(1)在自由表面上显式应用应力张量分量的零值,以及(2)对自由表面处或附近的垂直导数进行调整的FD近似值(AFDA)。该技术比ID模型中的标准应力成像技术更加准确和有效。在这项研究中,我们测试了AFDA技术在横向材料不连续到达自由表面的介质中的准确性。我们将FD合成材料与通过标准有限元(FE)方法计算的合成材料进行了比较,因为FE方法自然且足够准确地满足了自由表面的边界条件和内部材料不连续性的牵引界面连续性条件。比较显示AFDA技术的准确性非常好。我们还展示了我们的FD建模对于空间FD网格中相同物理模型的不同位置的非常好的敏感性。

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