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A CFD Investigation of Aerodynamic Effects of Wheel Center Geometry on Brake Cooling

机译:一种CFD调查车轮中心几何空气动力学效应对制动冷却的CFD效应

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Improving brake cooling has commanded substantial research in the automotive sector, as safety remains paramount in vehicles of which brakes are a crucial component. To prevent problems like brake fade and brake judder, heat dissipation should be maximized from the brakes to limit increasing temperatures. This research is a CFD investigation into the impact of existing wheel center designs on brake cooling through increased cross flow through the wheel. The new study brings together the complete wheel and disc geometries in a single CFD study and directly measures the effect on brake cooling, by implementing more accurately modeled boundary conditions like moving ground to replicate real conditions correctly. It also quantifies the improvement in the cooling rate of the brake disc with a change in wheel design, unlike previous studies. The axial flow discharge was found to be increased to 0.47 m~3/min for the suggested design in comparison to 0.04 m~3/min for traditional design. The increased axial flow enhances the velocity of flow over the brake disc leading to quicker dissipation of heat from turbulent eddies in the outer boundary layer. The brake disc exhibited approximately 33%-50% higher Heat Transfer Coefficient with the change in wheel center geometry. It is suggested that the implementation of a similar design is highly beneficial for improved brake cooling, and could bring a positive impact on the exploitation of wheel designs for the same, which currently are more tuned towards aesthetics than performance.
机译:改善制动冷却在汽车领域的大量研究中指出了实质性的研究,因为安全仍然是制动器是一个关键组件的车辆至关重要。为了防止制动器衰减和制动闸等问题,应从制动器中最大化散热,以限制增加的温度。该研究是CFD调查,进入现有轮子中心设计对制动器冷却的影响,通过随着轮子的增加。新的研究在单一CFD研究中汇集了完整的轮子和圆盘几何形状,并直接测量制动冷却的影响,通过实现移动地的更精确建模的边界条件,可以正确复制真实条件。与之前的研究不同,它还随着轮设计的变化量化制动盘的冷却速率的改善。对于建议的设计,发现轴向流量放电增加到0.47m〜3 / min,与传统设计的0.04m〜3 / min相比。增加的轴向流量增强了制动盘上流流的速度,从外边界层中的湍流漩涡可以快速地耗散热量。制动盘在轮中心几何形状的变化中显示出大约33%-50%的传热系数。建议,类似设计的实施对于改进的制动冷却,可以对具有改进的制动冷却产生积极影响,对车轮设计的开发产生积极影响,这对美学更加调整,而不是性能。

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