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Select Variables Affecting Thermal System Design of a Liquid-Cooled Stator

机译:选择影响液体冷却定子的热系统设计的变量

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NASA Glenn Researchers have endeavored to create a high-power-density, efficient electric motor called the High Efficiency Megawatt Motor (HEMM) with a goal of exceeding 98% efficiency and 1.46 MW of power. These aggressive goals were set because increasing the power density and efficiency of electric machines (motors and generators) is integral to bringing electrified aircraft (EA) to commercial realization. Resistive losses in the stator windings are by far the largest (34%) contributor to this design's total energy losses. Previous testing of a HEMM-like stator test article (statorette) showed good agreement between measured performance and model predictions. Therefore, a foundation was provided to test other engineering parameters that are encountered when designing an electric machine. Of particular interest are the effects of changes to the thickness of the epoxy from the potting process, changes in the fluid volume/flow path around the end windings, and changes in the viscosity of the cooling fluid on the overall thermal performance of the unit. The impact of those parameters as revealed through a third-generation build, test, and finite element model analysis of a statorette test section is the focus of this paper.
机译:NASA Glenn研究人员已经努力创造一个高功率密度,高效的电动机,称为高效兆瓦电机(HEMM),其效率超过98%和1.46兆瓦的电力。设置了这些攻击目标,因为增加了电机(电机和发电机)的功率密度和效率,这是将电气化飞机(EA)带到商业实现。定子绕组中的电阻损耗是迄今为止该设计总能量损失的最大(34%)的贡献者。以前的Hemm样定子测试物品(定子)测试了测量性能和模型预测之间的良好一致性。因此,提供了一个基础,以测试设计电机时遇到的其他工程参数。特别感兴趣的是对灌封过程的环氧树脂厚度变化的影响,在端部绕组周围的流体体积/流动路径的变化,以及冷却流体粘度的变化对单元的总热性能。通过第三代构建,测试和有限元模型分析来揭示这些参数的影响,定量试验部分是本文的焦点。

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