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The application of aerodynamic brake for high-speed trains

机译:空气动力学制动在高速列车中的应用

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The braking distance for high-speed trains (HST) operating over 200 km/h takes roughly over 6000 m and 1 minute 40 seconds. In an emergency situation, both braking distance and stopping time are too high. Reducing the time and the distance for braking for such trains will be beneficial for passengers' safety and railway system management. A number of studies have been conducted to develop a better braking system based on mechanical or electromechanical technologies to overcome this issue. In this study, computational fluid dynamics (CFD) analysis are conducted by designing prototypes of aerodynamic brakes inspired by commercial aircrafts' flaps. Limited studies have been performed in implementing an aerodynamic brake in the high-speed trains. The primary emphasis of this study is to examine the argumentation on an aerodynamic performance by mounting the aerodynamic brake on HSTs to find out its effectiveness in terms of energy saving. A full-scale model of HST was analyzed in this study by varying velocities (200 km/h to 400 km/h), and the operating angles (35 degrees to 55 degrees). The results show that aerodynamic brakes can reduce the braking distance by 2.53 % and 1.56 % for when using the commercial and emergent braking, respectively.
机译:高速列车(HST)的制动距离超过200 km / h,大约超过6000米和1分40秒。在紧急情况下,制动距离和停止时间都太高。减少了这种列车制动的时间和距离将有利于乘客的安全和铁路系统管理。已经进行了许多研究以发展基于机械或机电技术的更好的制动系统,以克服这个问题。在本研究中,通过设计由商用飞机的襟翼激发的空气动力学制动器的原型来进行计算流体动力学(CFD)分析。已经在高速列车中实施空气动力学制动器进行了有限的研究。本研究的主要重点是通过将空气动力学制动器安装在HST上的空气动力学制动器上来检查空气动力学性能,以在节能方面找出其有效性。通过不同的速度(200 km / h至400 km / h),在本研究中分析了HST的全规模模型,并且操作角度(35度至55度)。结果表明,使用商业和紧急制动时,空气动力学制动器可以将制动距离减小2.53%和1.56%。

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