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Power Losses and Heat Extraction in a Stator with Directly Air-Cooled Laminated Windings

机译:直接风冷叠片绕组的定子的功率损耗和散热

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This paper explores and assesses power loss generation and heat extraction in a stator with directly air-cooled laminated winding. An electrical machine winding made of an electric conducting sheet, which have slotted structure for accommodating a magnetic core, is denoted a laminated winding. A space is introduced between the conducting sheets so that the heating power is removed right where it is created. Explicit to the laminated windings, the conductors with smallest cross section and highest dc resistance have also limited cooling. Since these conductors are closest to the air-gap they become subject to induced power losses. An electrical machine with folded air-cooled laminated winding is built and evaluated. The paper demonstrates on how the thermal management of the stator segments is evaluated and adjusted during the manufacturing process. The power loss estimation of the prototype machine reveals significant discrepancy between the measurements and the calculation of known power losses at no load condition compared to short-circuit conditions. Conjugate heat transfer models are developed to evaluate the coolant flow distribution and heat dissipation in the direct air-cooled laminated windings.
机译:本文探讨并评估了直接风冷叠片式绕组定子的功率损耗产生和热量提取。由导电片制成的电机绕组被称为叠层绕组,该电机绕组具有用于容纳磁芯的开槽结构。在导电片之间引入空间,以便在产生热量的地方将其去除。对于叠片绕组,横截面积最小和直流电阻最高的导体的冷却效果也很有限。由于这些导体距离气隙最近,因此它们会受到感应功率损耗的影响。建立并评估了带有折叠风冷叠层绕组的电机。本文演示了如何在制造过程中评估和调整定子段的热管理。原型机的功率损耗估算表明,与短路条件相比,在空载条件下,测量值与已知功率损耗的计算值之间存在显着差异。开发了共轭传热模型,以评估直接风冷叠层绕组中的冷却剂流量分布和散热。

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