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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Numerical simulation of the seismic response of tunnels in sand with an elastoplastic model
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Numerical simulation of the seismic response of tunnels in sand with an elastoplastic model

机译:砂土隧道地震响应的弹塑性模型数值模拟

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The number of larger tunnels in seismic regions has grown significantly over the last decades. The behaviour of tunnels under seismic actions may be assessed using simplified or more complex approaches. Plane–strain centrifuge tests with dynamic loading on a model tunnel are used as experimental benchmark on the seismic behaviour of tunnels, with the ultimate aim of calibrating numerical and analytical design methods. Two models with dry uniform fine sand were prepared at two different densities, in which an aluminium-alloy tube was installed. This paper describes the numerical simulation of these tests with an elastoplastic model. The tunnel response recorded in the centrifuge tests is compared with the numerical prediction, showing the evolution of accelerations and internal forces along the tunnel lining during the model earthquakes. In general, the numerical simulation diverges from the recorded at the centrifuge tests. The numerical simulation largely amplifies the motion at the fundamental frequency of the soil deposit, while this effect is not significant in the centrifuge tests. It is shown that the peak increments in lining forces during dynamic loading measured in the centrifuge test disagree with the values from the numerical simulation and from the Wang’s elastic solution. The divergence observed between simulation and centrifuge tests may result mainly from the real initial stiffness of the sand in the centrifuge tests which are lower than those measured in laboratory tests and to the insufficient knowledge of all relevant stress paths to be imposed to soil for the calibration of model parameters.
机译:在过去的几十年中,地震地区较大的隧道数量大大增加。可以使用简化或更复杂的方法来评估隧道在地震作用下的行为。在模型隧道上进行动态载荷的平面应变离心机试验被用作隧道抗震性能的实验基准,其最终目的是校准数值和分析设计方法。以两种不同的密度准备了两种具有干燥均匀细砂的模型,其中安装了铝合金管。本文使用弹塑性模型描述了这些测试的数值模拟。将离心测试中记录的隧道响应与数值预测进行了比较,显示了模型地震期间沿隧道衬砌的加速度和内力的演变。通常,数值模拟与离心机测试中记录的数值不同。数值模拟极大地放大了土壤沉积物基频处的运动,而这种影响在离心试验中并不明显。结果表明,在离心测试中测得的动态载荷期间,衬砌力的峰值增量与数值模拟和Wang的弹性解中的数值不一致。模拟和离心试验之间观察到的差异可能主要是由于离心试验中砂子的实际初始刚度低于实验室试验中测得的初始刚度,以及对校准要施加到土壤的所有相关应力路径的了解不足模型参数。

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