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Local amplification of deep mining induced vibrations part.2: Simulation of ground motion in a coal basin

机译:深部采矿诱发振动的局部放大。第二部分:煤盆地地震动模拟

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摘要

This work investigates the impact of deep coal mining induced vibrations on surface constructions using numerical tools. An experimental study of the geological site amplification and of its influence on mining induced vibrations has already been published in the previous paper (Part 1: Experimental evidence for site effects in a coal basin). Measurements have shown the existence of an amplification area in the southern part of the basin where drilling data have shown the presence of particularly fractured and soft stratigraphic units. The present study, using the boundary element method (BEM) in the frequency domain, first investigates canonical geological structures in order to get general results for various sites. The amplification level at the surface is given as a function of the shape of the basin and of the velocity contrast with the bedrock. Next, the particular coal basin previously studied experimentally (Driad-Lebeau et al.[1 ]) is modeled numerically by BEM. The amplification phenomena characterized numerically for the induced vibrations are found to be compatible with the experimental findings such as: amplification level, frequency range and location. Finally, the whole work was necessary to fully assess the propagation and amplification of mine induced vibrations. The numerical results quantifying amplification can also be used to study other coal basins or various types of alluvial sites.
机译:这项工作使用数值工具研究了深部煤矿开采引起的振动对地面结构的影响。先前的论文已经发表了关于地质部位放大及其对采矿诱发的振动的影响的实验研究(第1部分:煤盆地场地效应的实验证据)。测量表明,盆地南部存在放大区域,钻探数据表明存在特别破裂和软的地层单元。本研究使用频域中的边界元方法(BEM),首先研究规范的地质结构,以便获得各个地点的一般结果。地表的放大水平是盆地形状和与基岩速度对比的函数。接下来,通过BEM对先前实验研究过的特定煤盆地(Driad-Lebeau等人[1])进行建模。发现以数字方式表征了诱发振动的放大现象与实验结果兼容,例如:放大水平,频率范围和位置。最后,整个工作对于充分评估地雷引起的振动的传播和放大是必要的。量化放大率的数值结果也可用于研究其他煤盆地或各种类型的冲积场。

著录项

  • 来源
    《Soil Dynamics and Earthquake Engineering》 |2010年第10期|P.947-957|共11页
  • 作者单位

    Universite Paris-Est LCPC Department of Soil and Rock Mechanics Engineering Geology 58 bd Lefebvre 75015 Paris France;

    Universite Paris-Est LCPC Department of Soil and Rock Mechanics Engineering Geology 58 bd Lefebvre 75015 Paris France Universite Paris-Est Laboratoire de Moderation et Simulation Multi-Ecbelle LMSME (CNRS UMR 8208) France;

    Institut National de l'Environnement Industriel et des Risques (INERIS) Ecole des Mines Pare Saurupt 54042 Nancy France;

    Universite Paris-Est Laboratoire de Moderation et Simulation Multi-Ecbelle LMSME (CNRS UMR 8208) France;

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

    site effects; vibration; coal mine; seismic wave; induced vibrations; amplification; boundary element method;

    机译:场地影响;振动;煤矿;地震波感应振动;放大;边界元法;
  • 入库时间 2022-08-18 04:33:51

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