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Dynamic response characteristics of crossing tunnels under heavy-haul train loads

机译:重载列车负荷下横梁隧道的动态响应特性

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The dynamic response of crossing tunnels under heavy-haul train loads is still not fully understood. In this study, based on the case of a high-speed tunnel underneath an existing heavy-haul railway tunnel, a model experiment was performed to research the dynamic response characteristics of crossing tunnels. It is found that the under-crossing changes the dynamic response of the existing tunnel and surrounding rock. The acceleration response of the existing tunnel enhances, and the dynamic stress of rock mass between crossing tunnels decreases after the excavation. Both tunneling and the excitation of heavy-haul train loads stretch the tunnel base, and the maximum tensile strain is 18.35 mu epsilon in this model test. Then, the measured results were validated by numerical simulation. Also, a parametric study was performed to discuss the influence of the relative position between crossing tunnels and the advanced support on the dynamic behavior of the existing tunnel, where an amplifying coefficient of tunnel vibration was introduced to describe the change in acceleration due to tunneling. These results reveal the dynamic amplifying phenomenon of the existing tunnel during the new tunnel construction, which can be referred in the dynamic design of crossing tunnels.
机译:跨越隧道在重型列车负荷下的动态响应仍然不完全理解。在本研究中,基于现有的重型铁路隧道下面的高速隧道的情况,进行了模型实验,以研究交叉隧道的动态响应特性。发现过桥改变了现有隧道和周围岩石的动态响应。现有隧道的加速度响应增强,交叉隧道之间的岩石质量的动态应力降低了挖掘后。隧道和重箱列车载荷的激励均伸展隧道底座,在该模型试验中,最大拉伸应变为18.35μmepsilon。然后,通过数值模拟验证测量结果。而且,进行参数研究以讨论交叉隧道之间的相对位置和对现有隧道的动态行为之间的相对位置的影响,其中引入了隧道振动的放大系数来描述由于隧道引起的加速度的变化。这些结果揭示了在新的隧道结构期间现有隧道的动态放大现象,这可以在交叉隧道的动态设计中提及。

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