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Characteristics analysis of heat-fluid-solid coupling field for linear resonant testing platform

机译:线性共振测试平台的热-固-固耦合场特性分析

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Efficient cooling method helps to improve the output performance of a motor, and liquid cooling is one of the best cooling methods. In this paper, a linear resonant testing platform is proposed to simulate the reciprocating motion of the linear oscillating motor, in which two check valves are adopted to achieve the cooling oil circulating. The thermal model is presented to calculate the thermal distribution of the testing platform in the condition with and without cooling oil for different current inputs. Shear stress model of the oil is built and mixing losses is systematically calculated to analyze the fluid damping characteristics. The relationship of the pressure, driving force, viscous, wall shear stress and mixing losses with the oil velocity is detailedly analyzed. The thermal analysis and fluid mixing losses formulation of the testing platform provide theoretical references for the design optimization and work efficiency improvement of the linear oscillating motor.
机译:高效的冷却方法有助于改善电动机的输出性能,液体冷却是最好的冷却方法之一。本文提出了一种线性共振测试平台来模拟线性振荡电机的往复运动,其中采用两个止回阀来实现冷却油的循环。提出了热模型,以计算在有和没有冷却油的情况下针对不同电流输入的情况下测试平台的热分布。建立了油的剪切应力模型,并系统地计算了混合损失,以分析流体的阻尼特性。详细分析了压力,驱动力,粘性,壁面剪应力和混合损失与油速之间的关系。测试平台的热分析和流体混合损失的公式化为线性振荡电机的设计优化和工作效率的提高提供了理论参考。

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