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Numerical and experimental study on the static performance of externally pressurized thrust bearings lubricated with refrigerant gases

机译:制冷剂气体润滑外加压推力轴承静态性能的数值与实验研究

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Purpose Oil-free heat pumps that use the system refrigerant gases as lubricants are preferred for thermal management in future space applications. This study aims to numerically and experimentally investigate the static performance of externally pressurized thrust bearings lubricated with refrigerant gases.Design/methodology/approach The refrigerant gases R22, R410A and CO2 were chosen as the research objects, while N2 was used for comparison. Computational fluid dynamics was used to solve the full 3 D Navier–Stokes equations to determine the load capacity, static stiffness and static pressure distribution in the bearing film. The numerical results were experimentally verified.Findings The results showed that the refrigerant-gas-lubricated thrust bearings had a lower load capacity than the N2-lubricated bearings, but they presented a higher static stiffness when the bearing clearance was less than 9 µm. Compared with the N2-lubricated bearings, the optimal static stiffness of the R22- and CO2-lubricated bearings increased by more than 46 and more than 21, respectively. The numerical and experimental results indicate that a small bearing clearance would be preferable when designing externally pressurized gas thrust bearings lubricated with the working medium of heat pump systems for space applications.Originality/value The findings of this study can serve as a basis for the further investigation of refrigerant gases as lubricants in heat pump systems, as well as for the future design of such gas bearings in heat pump systems for space applications.
机译:目的:使用系统制冷剂气体作为润滑剂的无油热泵是未来空间应用中热管理的首选。本研究旨在从数值和实验上研究制冷剂 gases.Design/methodology/approach 润滑外加压推力轴承的静态性能 选取制冷剂气体R22、R410A和CO2作为研究对象,采用N2进行比较。采用计算流体力学求解完整的三维纳维-斯托克斯方程,以确定轴承膜中的载荷承载能力、静刚度和静压分布。数值结果通过实验验证。结果表明:制冷剂气体润滑推力轴承的承载能力低于N2润滑轴承,但当轴承游隙小于9 μm时,静刚度较高。与N2润滑轴承相比,R22和CO2润滑轴承的最佳静刚度分别提高了46%和21%以上。数值和实验结果表明,在设计空间应用热泵系统工作介质润滑的外压气体推力轴承时,轴承游隙较小。原创性/价值 本研究结果可作为进一步研究制冷剂气体作为热泵系统中润滑剂的基础,以及未来在空间应用热泵系统中设计此类气体轴承的基础。

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