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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >An analytical solution for circular tunnels excavated in rock masses exhibiting viscous elastic-plastic behavior
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An analytical solution for circular tunnels excavated in rock masses exhibiting viscous elastic-plastic behavior

机译:岩体膨胀圆形隧道的分析解决方案,展示粘性弹性塑性行为

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摘要

Investigating time-dependent behavior of tunnels driven in rocks has been the topic of interest for many years. The majority of researches were conducted with the assumption that the behavior of the surrounding rock masses is viscoelastic. In this paper, an analytical solution is proposed for circular tunnels under hydrostatic stress field, whose surrounding rock mass is isotropic, homogenous, obeying viscous elastic-plastic constitutive model. It is assumed that the rate of excavation is infinitely large. Therefore, the solution is proposed for unlined tunnels when the advance of tunnel face is halted, or after lining installation when the tunnel face is far from the studied section. The results were compared with those predicted by finite difference numerical model which exhibited a good agreement for both lined and unlined tunnels, except for large times where numerical model results slightly exceed the values predicted by the proposed solutions for lined tunnels.
机译:在岩石中驱动的隧道的时间依赖行为是多年来感兴趣的主题。 假设周围岩体的行为是粘弹性的假设进行了大部分研究。 本文提出了一种分析解决方案,用于静压应力场下的圆形隧道,其周围岩体是各向同性的,均匀的,遵循粘性弹性塑性本构模型。 假设挖掘速率无限大。 因此,当隧道面的前进停止时,或者当隧道面远离所研究的截面时,隧道面的前进或在衬砌安装之后,提出了该解决方案。 将结果与由有限差分数值模型预测的结果进行了比较,这些模型对衬里和无衬隧道的良好一致性,除了数值模型结果略微超过所提出的隧道隧道解决方案预测的值。

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