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Centrifuge and numerical modelling of ground-borne vibration from an underground tunnel

机译:地下隧道地面振动的离心机和数值模拟

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Ground-borne vibration from underground tunnels is a major environmental concern in urban areas. Various studies, mostly based on numerical methods, have been conducted to investigate this problem. In the numerical models, soil stiffness and damping are commonly assumed to remain constant with depth (homogeneous assumption) in order to simplify the problem. However, various studies in the field of geotechnical engineering have shown that soil properties change with depth due to the effect of increased confining stress. This paper presents a study of the effects of variation of soil properties with depth (soil non-homogeneity) on ground-borne vibration from an underground tunnel. Both centrifuge and numerical modelling were used to perform the study. In the centrifuge model, a plastic pipe was buried within sand to model the underground tunnel. Vibration excitation was applied to the model tunnel invert by a small shaker. The tunnel and soil response was measured using accelerometers during the tests. Corresponding numerical models, based on FLAG 3D, were built to simulate the centrifuge tests. The potential boundary effects of the centrifuge tests were examined by the numerical models. The model responses for both homogenous and non-homogenous cases were also calculated by the numerical models. Comparison of the experimental and numerical results shows that a homogenous model can give acceptable estimates of the tunnel behaviour. However, a clear improvement of estimates of soil behaviour is observed when the variation of soil properties with depth is considered in the numerical model.
机译:来自地下隧道的地面传播振动是城市地区的主要环境问题。已经进行了各种研究,主要是基于数值方法,以研究此问题。在数值模型中,通常假定土壤刚度和阻尼随深度保持恒定(均质假设),以简化问题。但是,岩土工程领域的各种研究表明,由于围压的增加,土壤的性质会随着深度的变化而变化。本文研究了土壤特性随深度的变化(土壤非均质性)对地下隧道地面传播振动的影响。离心和数值模拟均用于进行研究。在离心机模型中,一根塑料管被埋在沙子中以模拟地下隧道。用小型振动器将振动激励施加到模型隧道的反面。在测试过程中,使用加速度计测量了隧道和土壤的响应。建立了基于FLAG 3D的相应数值模型来模拟离心机测试。离心试验的潜在边界效应通过数值模型进行了检验。还通过数值模型计算了均质和非均质案例的模型响应。实验和数值结果的比较表明,同质模型可以给出可接受的隧道行为估计。但是,当在数值模型中考虑土壤特性随深度的变化时,可以观察到土壤行为估计值的明显改善。

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