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CFD simulation of train aerodynamics: Train-induced wind conditions at an underground railroad passenger platform

机译:火车空气动力学的CFD模拟:地下铁路客运平台上火车引起的风况

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摘要

The Dutch railways plan to increase the amount of trains and their running velocities to avoid overcrowded trains during rush hours. This can cause pedestrian wind discomfort or danger at the platforms as trains will be allowed to pass small railway stations at high speeds up to 140 km/h. A number of these railway stations lie underground, where wind gusts caused by trains are amplified by space confinement. The purpose of this study is to evaluate the effect of passing passenger trains andfreight trains on the wind conditions induced on a passenger platform inside an underground tunnel by means of Large-Eddy simulations (LES). First, the computational model, which includes stationary (tunnel and platform) and moving (train) subdomains, is validated by available experimental data for a train running through a tunnel. Next, case studies are performed for a passenger train and a freight train, where the dimensions of the tunnel and the platform are chosen from the Dutch design requirements for railroad tunnels and platforms. The results of the study show that passengers standing on a platform can experience strong wind effects when passenger trains or freight trains are passing at speeds of 140 and 100 km/h, respectively. These effects might give rise to wind discomfort or evenwind danger, and should be taken into account in the design of railway tunnels and platforms and in safety regulations.
机译:荷兰铁路公司计划增加火车的数量和运行速度,以避免高峰时段火车拥挤。由于允许火车以高达140 km / h的速度通过小型火车站,因此这可能在平台上引起行人不适或危险。这些火车站中的许多都位于地下,由于空间限制,火车造成的阵风被放大。这项研究的目的是通过大涡模拟(LES)评估过往旅客列车和货运列车对地下隧道内旅客平台上引起的风况的影响。首先,计算模型包括固定(隧道和平台)子域和移动(火车)子域,并通过通过隧道的火车的可用实验数据进行验证。接下来,对客运火车和货运火车进行案例研究,其中隧道和平台的尺寸是从荷兰对铁路隧道和平台的设计要求中选择的。研究结果表明,当旅客列车或货运列车分别以140 km / h和100 km / h的速度通过时,站在平台上的乘客会受到强烈的风力影响。这些影响可能会引起风的不适甚至风的危险,在铁路隧道和站台的设计以及安全法规中应予以考虑。

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