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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermal characteristics and effects of oil spray cooling on in-wheel motors in electric vehicles
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Thermal characteristics and effects of oil spray cooling on in-wheel motors in electric vehicles

机译:电动汽车在轮式电动机上的热特性及效果

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摘要

The output, efficiency, and durability of in-wheel motors in electric vehicles (EVs) depend on heat dissipation performance; therefore, effective active cooling is essential. However, investigating flows under high-speed conditions and predicting component temperatures that cannot be measured by direct contact requires a reliable numerical analysis model. In this study, the oil spray cooling of an in-wheel motor was compared with an in wheel motor with only simple channel cooling, and to motors with conventional stagnant and circulating which is adapted conventional motors, and at base speed (4400 RPM) the coil absolute temperature induced by spraying was 25.0%, 11.6%, 15.8% lower than conventional methods, respectively. At base speed (4400 RPM) and maximum speed (11,000 RPM), the average heat transfer coefficients of the direct spray cooling area were 5270 Wm(-2) K-1 and 10,849 Wm(-2) K-1, respectively; the heat transfer coefficients of the secondary flow cooling area were 2372 Wm(-2) K-1 and 8913 Wm(-2) K-1. The oil film's cooling effect increased with increasing motor speed, and the ratio of the oil film's conduction heat transfer to the oil spray's convection heat transfer was 9.8 times higher at maximum speed that at base speed.
机译:电动车辆中车载电机(EVS)的输出,效率和耐久性取决于散热性能;因此,有效的主动冷却至关重要。然而,在高速条件下调查流动并预测不能通过直接接触测量的部件温度需要可靠的数值分析模型。在这项研究中,将轮式电机的油喷射冷却与车轮电动机进行了比较,只有简单的通道冷却,以及具有常规停滞和循环的电机,其适用于常规电动机,基本速度(4400 rpm)喷雾诱导的线圈绝对温度分别比常规方法分别为25.0%,11.6%,15.8%。在基速(4400rpm)和最大速度(11,000rpm)时,直接喷雾冷却面积的平均传热系数分别为5270wm(-2)k-1和10,849wm(-2)k-1。二次流动冷却面积的传热系数为2372Wm(-2)k-1和8913Wm(-2)k-1。通过增加的电动机速度提高油膜的冷却效果,油膜传热与油喷雾的对流传热的比率以基本速度的最高速度为9.8倍。

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