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Convective heat dissipation from a wheel-hub-mounted railway brake disc

机译:轮毂安装的铁路制动盘的对流散热

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Air flow and convective heat dissipation from a wheel-hub-mounted railway brake disc were studied using computational fluid dynamics (CFD). The analyses enabled detailed insight into air flow, temperature, speed, pressure, and convective heat transfer coefficient distributions, never before available to a brake designer. Such results are practically impossible to experimentally obtain at reasonable cost. Particularly interesting finding is the existence of relatively considerable secondary flow - circumferential flow behind the vanes. Although this effect may reduce air pumping, and therefore radial air speed, it increases turbulence by promoting airflow between channels. Average values of the convective heat transfer coefficients obtained using CFD are practically identical to the experimental values derived from cooling tests performed on dynamometer and spin rig. Compared with other railway disc designs, this disc demonstrates exceptionally good convective cooling characteristics, in particular considering its size and investigated operating condition (rotation in still air). The computational studies of air flow and heat dissipation characteristics are an excellent base for development work in improving existing and generating new disc designs with high heat dissipation characteristics. Future work is concentrated on conducting additional analyses of the current disc design, in order to investigate the most effective ways of maximizing convective cooling. [PUBLICATION ABSTRACT]
机译:使用计算流体力学(CFD)研究了轮毂安装式铁路制动盘的气流和对流散热。这些分析使您能够深入了解气流,温度,速度,压力和对流传热系数分布,而这对于制动器设计人员来说是前所未有的。这样的结果实际上不可能以合理的成本通过实验获得。特别有趣的发现是存在相对大量的二次流-叶片后面的圆周流。尽管此效果可能会减少空气泵送,从而降低径向空气速度,但它会通过促进通道之间的气流来增加湍流。使用CFD获得的对流传热系数的平均值实际上与从测功机和旋转钻机上进行的冷却测试得出的实验值相同。与其他铁路盘设计相比,该盘具有出色的对流冷却特性,尤其是考虑到其尺寸和所研究的工作条件(静止空气中的旋转)。空气流动和散热特性的计算研究是改进现有工作并生成具有高散热特性的新磁盘设计的良好基础。为了研究使对流冷却最大化的最有效方法,未来的工作将集中在对当前阀瓣设计进行额外分析。 [出版物摘要]

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    M Tirovic C H Galindo-Lopez;

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    M Tirovic* and C H Galindo-LopezDepartment of Automotive Engineering, Cranfield University, Cranfield, UKThe manuscript was received on 21 December 2006 and was accepted after revision for publication on 11 April 2008.DOI: 10.1243/09544097JRRT135*Corresponding author: Department of Automotive Engineering, Cranfield University, Cranfield, Beds MK43 0AL, UK. email: m.tirovic@cranfield.ac.uk;

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