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THE EFFECT OF AXIAL FLOW VELOCITY ON ANNULAR GAP WINDAGE POWER LOSS

机译:轴流速度对环隙风向功率损耗的影响

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As surface speeds of electrical machinery increase to meet ever more demanding application requirements, windage power losses due to shearing of air (or other process fluid) between the rotor and stator take on an increasingly significant role. Historically, these losses have not received a huge amount of research attention from the high speed motor community. Common approaches include making the rotor and stator surfaces as smooth as possible, keeping the rotor-stator gap as large as practical without compromising electrical efficiency, and simply accepting whatever losses are present. This paper presents a combined Computational Fluid Dynamics and experimental evaluation of the effect of axial flow on windage power loss in a rotor-stator gap. The results support other results in the literature suggesting that careful tuning of axial flow velocity in the gap can suppress the formation of turbulent Taylor vortices, and thereby reduce windage power loss. In specific cases, reductions in windage power loss of up to 30 percent have been predicted. The presence of an optimal axial flow velocity is confirmed experimentally.
机译:随着电机的表面速度增加以满足越来越苛刻的应用要求,由于转子和定子之间的空气(或其他过程流体)被剪切而引起的风阻功率损耗起着越来越重要的作用。从历史上看,这些损失并未引起高速电机界的大量研究关注。常见的方法包括使转子和定子的表面尽可能平滑,在不影响电效率的情况下使转子-定子间隙保持尽可能大的实用性,以及简单地接受存在的任何损耗。本文将计算流体动力学与轴向流动对转子-定子间隙中的风阻功率损失的影响进行了综合的实验评估。该结果支持文献中的其他结果,表明仔细调整间隙中的轴向流速可以抑制湍流泰勒涡流的形成,从而减少风阻功率损失。在特定情况下,预计风阻功率损耗最多可降低30%。实验确定了最佳轴向流速的存在。

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