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Discretization effects in the finite element simulation of seismic waves in elastic and elastic-plastic media

机译:弹性和弹塑性介质中地震波有限元模拟中的离散化效应

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摘要

Abstract Presented here is a numerical investigation that (re-) appraises standard rules for space/time discretization in seismic wave propagation analyses. Although the issue is almost off the table of research, situations are often encountered where (established) discretization criteria are not observed and inaccurate results possibly obtained. In particular, a detailed analysis of discretization criteria is carried out for wave propagation through elastic and elastic-plastic media. The establishment of such criteria is especially important when accurate prediction of high-frequency motion is needed and/or in the presence of highly non-linear material models. Current discretization rules for wave problems in solids are critically assessed as a conditio sine qua non for improving verification/ validation procedures in applied seismology and earthquake engineering. For this purpose, the propagation of shear waves through a 1D stack of 3D finite elements is considered, including the use of wide-band input motions in combination with both linear elastic and non-linear elastic-plastic material models. The blind use of usual rules of thumb is shown to be sometimes debatable, and an effort is made to provide improved discretization criteria. Possible pitfalls of wave simulations are pointed out by highlighting the dependence of discretization effects on time duration, spatial location, material model and specific output variable considered.
机译:摘要本文是一个数值研究,它(重新)评估了地震波传播分析中时空离散的标准规则。尽管这个问题几乎不在研究范围之内,但经常遇到以下情况:未遵守(已建立的)离散化标准,并且可能获得不准确的结果。特别是,对于通过弹性和弹塑性介质传播的波,进行了离散化准则的详细分析。当需要准确预测高频运动和/或存在高度非线性的材料模型时,建立此类标准尤为重要。严格评估当前关于固体中波问题的离散化规则,作为在应用地震学和地震工程中改进验证/确认程序的必要条件。为此,考虑了剪切波在3D有限元的1D堆栈中的传播,包括使用宽带输入运动以及线性弹性和非线性弹性塑性材料模型。盲目使用通常的经验法则有时会引起争议,并努力提供改进的离散化标准。通过突出离散化效果对持续时间,空间位置,材料模型和所考虑的特定输出变量的依赖性,指出了波动模拟的可能陷阱。

著录项

  • 来源
    《Engineering with Computers》 |2017年第3期|519-545|共27页
  • 作者单位

    Shimizu Corporation, 16-1, Kyobashi 2-chome, Chuo-ku, Tokyo 104-8370, Japan;

    Geo-Engineering Section/Offshore Engineering Section, Faculty of Civil Engineering and Geoscience, Delft University of Technology, Stevinweg 1, Delft 2628 CN, The Netherlands;

    Department of Civil and Environmental Engineering, University of California, 1 Shields Avenue, Davis 95616, CA, USA,Lawrence Berkeley National Laboratory, Berkeley 94720,CA, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wave propagation; Seismic; Discretization; Elastic; Elastic-plastic; Verification;

    机译:波传播;地震离散化;弹性弹塑性验证;

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