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首页> 外文期刊>International Journal of Heat and Mass Transfer >Churning losses analysis on the thermal-hydraulic model of a high-speed electro-hydrostatic actuator pump
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Churning losses analysis on the thermal-hydraulic model of a high-speed electro-hydrostatic actuator pump

机译:高速电动静液压执行器泵热工模型的流失分析

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The speed of Electro-Hydrostatic Actuator (EHA) pump can recently reach a maximum of 20,000 rpm due to its high power density requirements. The thermodynamics of EHA pumps become increasingly important because the oil in the casing is used to cooling the high speed electric motor and solving the "hot spots" problem in the EHA system. In order to realize the boundary condition for the motor cooling at high speeds, more investigations should be given to the churning losses in terms of the large centrifugal forces of piston/cylinder assemblies and high fluid kinetic energy in high-speed conditions. This paper analyzes the influence of churning losses on the thermal -hydraulic model. Using the control volume method, heat transfer analysis of the piston pump is presented and the heat flow inside the piston pump produced by churning losses is described in details. The steady-state leakage temperatures of the high-speed EHA pump are simulated and validated through experiments. The experimental results show that the churning power losses need to be considered on the thermal-hydraulic model to ensure good performance for the prediction of the leakage temperature in EHA pump. (C) 2018 Elsevier Ltd. All rights reserved.
机译:电动静液压执行器(EHA)泵的速度因其高功率密度要求而最近可达到最高20,000 rpm。由于外壳中的油被用于冷却高速电动机并解决EHA系统中的“热点”问题,因此EHA泵的热力学变得越来越重要。为了实现高速电动机冷却的边界条件,应针对活塞/气缸组件的大离心力和高速条件下的高流体动能进行更多研究。本文分析了搅拌损失对热工水力模型的影响。使用控制体积法,对活塞泵进行了传热分析,并详细描述了由于搅动损耗而在活塞泵内部产生的热流。通过实验仿真并验证了高速EHA泵的稳态泄漏温度。实验结果表明,在热工水力模型上需要考虑搅拌功率损失,以确保良好的性能以预测EHA泵的泄漏温度。 (C)2018 Elsevier Ltd.保留所有权利。

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