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Power Consumption Analysis of High-speed Train's Brake Discs

机译:高速列车刹车片的功耗分析

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Apart from the aerodynamic drag produced by transitional motion of high-speed train, the rotational parts of the train, especially the ventilated discs mounted on axles, would also cause resistance torques due to air pumping effect, which consume traction power. In this paper the train running process is divided into traction, uniform running and braking three phases, then the power consumed by the brake discs as well as the proportion of which in total traction or braking power during the three periods is calculated based on kinetic energy theorem. The results indicate that, during traction and uniform running period, the power consumption of brake discs shares 2.84% and 12.87% of total traction power, and in brake stage, the proportion is 0.78%. What is more, in the uniform running phase, the proportion of brake discs' power consumption caused by resistance torque can reach to 7.68%. If the air inlet of brake disc is blocked during traction and uniform running period to weaken air pumping effect, the useless power consumption can be effectively reduced and the traction efficiency can be improved.
机译:除了高速列车过渡运动产生的空气动力学阻力外,列车的旋转部分,尤其是安装在轴上的通风盘,也会引起由于空气泵送效果引起的阻力扭矩,这消耗了牵引力。在本文中,火车运行过程分为牵引力,均匀的运行和制动三相,然后基于动能计算了制动盘的功率以及在三个时段的总牵引力或制动功率中的比例进行了计算定理。结果表明,在牵引和均匀的运行期间,制动盘的功耗占总牵引力的2.84%和12.87%,比例为0.78%。更重要的是,在均匀的运行阶段,由电阻扭矩引起的制动盘的功耗的比例可以达到7.68%。如果在牵引过程中制动盘的空气入口被阻挡,并且运行均匀的运行时间削弱空气泵送效果,则可以有效地降低无用的功耗,并且可以提高牵引效率。

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