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Evacuation Simulation of the Yangtze River-crossing Highway-metro Integrated Tunnel on Sanyang Road in Wuhan

机译:武汉三阳路长江交叉路路通道综合隧道疏散模拟

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In response to the evacuation and rescue of fires occurred in the Yangtze River-crossing highway-Metro integrated tunnel on Sanyang Road in Wuhan, the Pathfinder was used to simulate the evacuation of highway tunnels and subway tunnels. The variables in the simulation are: the distance between evacuation stairs in the road tunnel is 50 m, 75 m, 100 m; the width of the evacuation gate in the subway tunnel is 0.9 m and 1.4 m, and the evacuation gates interval is 100 m, 150 m. The research shows that: under the design of traffic conditions, the evacuation time of highway tunnels is mainly affected by the spacing of the slides. The larger the spacing, the longer the evacuation time. In the subway tunnel, the smaller the width of the evacuation gates, the larger the distance between the evacuation gates, the longer the time is; when the top exhaust fails, the interval of the evacuation door is 50 m, which meets the requirements; when the top exhaust is effective, the evacuation gate spacing is 50 m and 75 m, which basically meets the requirements. The simulation provides a reference for the evacuation of the new type of joint tunnel.
机译:在武汉三阳路的长江交叉路路路通道综合隧道中发生了疏散和救援,探路器用于模拟公路隧道和地铁隧道的疏散。仿真中的变量是:道路隧道中的疏散楼梯之间的距离为50米,75米,100米;地铁隧道中的抽空栅极的宽度为0.9μm和1.4米,疏散门间隔为100米,150米。研究表明:在交通条件的设计下,公路隧道的疏散时间主要受载玻片间距的影响。间距越大,疏散时间越长。在地铁隧道中,疏散门的宽度越小,疏散门之间的距离越大,时间越长;当顶部排气失效时,疏散门的间隔为50米,符合要求;当顶部排气有效时,抽空栅极间距为50米和75米,基本上满足要求。仿真为新型联合隧道的疏散提供了参考。

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