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Development of Aerodynamic Brake Device for High-speed Railway

机译:高速铁路空气动力制动装置的研制

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摘要

To shorten stopping distances of high-speed trains in case of emergency braking, the author of this paper developed a small, light-weight aerodynamic braking device. To examine its aerodynamic characteristics, a full-scale prototype was tested in a wind tunnel facility at a maximum flow speed of 400 km/h. Tests confirmed that the response time for deployment of the device was only 0.39 s, and that the prototype was able to produce an aerodynamic drag force of 2.3 kN per unit. In addition, performance was calculated using computational fluid dynamics (CFD). The result of the CFD analysis around a train roof with a large number of devices showed that the staggered arrangement of the devices could increase the total drag force by 10 percent compared to the standard parallel arrangement.
机译:在紧急制动情况下缩短了高速列车的停止距离,本文的作者开发了一种小型轻质空气动力学制动装置。为了检查其空气动力学特性,以400 km / h的最大流速在风隧道设施中测试全规模的原型。测试证实,该设备部署的响应时间仅为0.39秒,并且原型能够产生每单位2.3 kn的空气动力拖曳力。此外,使用计算流体动力学(CFD)计算性能。与大量设备的列车屋顶周围的CFD分析结果表明,与标准并联布置相比,器件的交错布置可以将总阻力增加10%。

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