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Static and Dynamic Response of Bedding Structure in Railway Tunnel

机译:铁路隧道垫层结构的静动力响应

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On the basis of quasi-static loading, we selected the bedding()ructure of a railway tunnel under the rail as a research model and implemented static and dynamic analysis thro()numerical simulations. About bedding structure, we meant the concrete base between the ballast and the soil fou()tion under the rail structure of a tunnel, Four models of the tunnel bedding structure were analyzed under the static()d impact loads of the train by simulating the infrastructure under the track. In this study, we examined the relationsh()between the vertical dynamic coefficient and the train velocity, and also analyzed the damage sustained by the bed()g structure under the static and dynamic loads. It is suggested that the damage in the concrete bedding is detected()the longitudinal direction, immediately below the two rails, and that this damage is likely to occur not from atta()g an elastic limit under static loads but more likely from damage accumulation in fatigue due to repeated loading()n the bedding structure constructed with a steel bar, the attenuation rate at which the stress is transferred from t()top bedding to the upper surface of the foundation rock will be high.
机译:在准静态载荷的基础上,我们选择了铁路隧道在轨下的垫层构造作为研究模型,并通过数值模拟进行了静态和动态分析。关于垫层结构,我们指的是隧道轨道结构下道ast与土体之间的混凝土基础。通过模拟列车的静(冲击)载荷作用,分析了四种隧道垫层结构模型。基础设施。在这项研究中,我们研究了垂直动态系数与列车速度之间的关系,并分析了在静态和动态载荷下Bed()g结构所遭受的破坏。建议在垂直方向上检测混凝土垫层中的损坏,位于两个导轨的正下方,并且这种损坏很可能不是由静态载荷作用下的弹性极限引起的,而是由损伤累积引起的在由于反复地用钢筋构造的垫层结构而引起的疲劳中,应力从t()顶部垫层传递到基础岩石上表面的衰减率会很高。

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