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Dynamic response of flexible square tunnels: centrifuge testing and validation of existing design methodologies

机译:柔性方形隧道的动态响应:离心机测试和现有设计方法的验证

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摘要

A series of dynamic centrifuge tests were performed on a flexible aluminium square tunnel model embedded in Hostun dry sand. The tests were carried out at the centrifuge facility of the University of Cambridge in order to further improve knowledge regarding the seismic response of rectangular embedded structures and to calibrate currently available design methods. The soil–tunnel system response was recorded with an extensive instrumentation array, comprising miniature accelerometers, pressure cells and position sensors in addition to strain gauges, which recorded the tunnel lining internal forces. Tests were numerically analysed by means of full dynamic time history analysis of the coupled soil–tunnel system. Numerical predictions were compared to the experimental data to validate the effectiveness of the numerical modelling. The interpretation of both experimental and numerical results revealed, among other findings: (a) a rocking response of the model tunnel in addition to racking; (b) residual earth pressures on the tunnel side walls; and (c) residual internal forces after shaking, which are amplified with the tunnel's flexibility. Finally, the calibrated numerical models were used to validate the accuracy of simplified design methods used in engineering practice.
机译:对嵌入在Hostun干砂中的柔性铝方形隧道模型进行了一系列动态离心测试。这些测试是在剑桥大学的离心机上进行的,目的是进一步提高有关矩形嵌入式结构的地震响应的知识并校准当前可用的设计方法。用广泛的仪器阵列记录了土-隧道系统的响应,该阵列包括微型加速度计,压力传感器和位置传感器,以及应变仪,用于记录隧道衬砌的内力。通过耦合土-隧道系统的全动态时程分析,对试验进行了数值分析。将数值预测与实验数据进行比较,以验证数值建模的有效性。对实验结果和数值结果的解释揭示了以下发现:(a)除机架外,模型隧道的摇摆响应; (b)隧道侧壁上的残余土压力; (c)晃动后的残余内力,随着隧道的柔性而增大。最后,使用校准的数值模型来验证工程实践中使用的简化设计方法的准确性。

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