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STUDY ON THE INFLUENCE OF BOLT ANCHORED CATENARY ON TUNNEL LINING UNDER THE AERODYNAMIC LOAD

机译:气动负荷下锚杆锚定锚链对隧道衬砌的影响研究

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摘要

In order to study the influence of Bolt anchored catenary on tunnel lining under the aerodynamic load, the paper takes a tunnel on Qinhuangdao -Shenyang Railway as an example.The force of lining structure is studied using numerical simulation based on the research and analysis of relevant theory and model test results. Firstly, the variation of the air pressure in the tunnel was calculated caused by the train when it is passing through the tunnel at different speeds (200 ~ 400km/h). Then, by ANSYS the aerodynamic load calculated by FLUENT is applied to the simplified catenary suspension. The main results are as follows: 1. The maximum normal stress of tunnel lining with train speed according to the power law, and maximum normal stress with train speed according to quadratic function relation; 2. Tunnel lining is subjected to push-pull stress because the magnitude and direction of aerodynamic loads change with the advance of the train; 3. The lining structure is mainly subjected to the stress of the Y direction, and this stress should not be neglected when design the structure of tunnel secondary lining. 4. The load spectrum of the lining structure under different train speed is given. The research results of this paper are of great significance to the optimization design of tunnel lining structure.
机译:为了研究气动负荷下隧道衬砌的锚杆锚定的影响,凭借基于相关的研究和分析,研究了衬里结构的隧道。衬里结构的力量研究和分析理论与模型测试结果。首先,当在不同速度(200〜400km / h)时,由火车引起隧道中的空气压力的变化。然后,通过ANSYS通过流利计算的空气动力学载荷应用于简化的悬浮悬架。主要结果如下:1。隧道衬里的最大正常应力与火车速度,根据电力法,根据二次函数关系,具有列车速度的最大正常应力; 2.隧道衬里经受推挽应力,因为空气动力负载的大小和方向随着火车的进展而变化; 3.衬砌结构主要受到Y方向的应力,在设计隧道二次衬里的结构时,不应忽视这种压力。给出了不同列车速度下的衬里结构的负载谱。本文的研究结果对隧道衬砌结构的优化设计具有重要意义。

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