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Performance Estimation of a Traction Machine with Direct Cooled Hairpin Winding

机译:直接冷却发夹绕组牵引机的性能估计

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Hollow and profiled conductors, which can be categorized as direct cooled conductors, are selected to develop a design proposal of an electrical machine with direct cooled hairpin type of winding. The objectives of this work are 1) investigating the benefits of direct heat removal when using hollow and profiled conductors, and 2) analyzing high frequency capability of these types of windings. Firstly, the winding layouts for a discontinuous hair-pin and a continuous wave winding are drawn in order to visualize the formation of end-turn region and the access points for the coolant. Secondly, the cooling characterization is carried out on basis of a test cell and corresponding 3D FE conjugate heat transfer model. Thirdly, power loss characterization is carried out with focus on AC losses in the winding over the operation range of interest. And finally, a conventional machine where the winding is made a solid rectangular conductor is compared to direct cooled conductors. The exploitation of direct cooled conductors causes higher power losses for the same current as the conductor material is removed for the cooling and thereby improving the thermal management as the coolant removes directly the heat. Consequently, the intermittent torque density, also power capability is increased but that at the cost of a higher tension in the construction materials, specifically in the insulation system, when intensive parallel cooling is applied across the machine winding involving overhangs and the conductors in the slot.
机译:中空及异形导线,其可被分类为直接冷却导体,被选择来开发电机的设计方案,可直接冷却发夹型绕组的。这项工作的目标是:1)当使用空心型材和导体,和2)分析这些类型的绕组的高频能力,调查直接去除热量的好处。首先,对不连续的发针和连续波绕组绕组布局被绘制,以可视化端部线匝区域的形成和用于冷却剂的接入点。其次,冷却表征在测试细胞的基础和相应的3D FE共轭传热模型进行。第三,功率损耗特性与重点,在感兴趣的操作范围内的绕组进行交流的损失。最后,其中绕组由固体矩形导体的传统机器相比较以引导冷却导体。直接冷却导体的开发使得用于作为导体材料被用于冷却和由此改善的热管理作为冷却剂直接把热除去相同的电流更高的功率损耗。因此,间歇转矩密度,也功率容量增加,但其在结构材料更高的张力的成本,特别是在绝缘系统中,当集约平行冷却横跨机器绕组涉及突出端和所述导体在槽施加。

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