A comparative study of ferrofluid lubrication on double-layer porous squeeze curved annular plates with slip velocity

IF 0.5 Q3 ENGINEERING, MULTIDISCIPLINARY
Niru C. Patel, J. Patel, G. Deheri
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引用次数: 0

Abstract

This article makes an effort to present a comparative study on the performance of a Shliomis model-based ferrofluid (FF) lubrication of a porous squeeze film in curved annular plates taking slip velocity into account. The modified Darcy’s law has been adopted to find the impact of the doublelayered porosity, while the slip velocity effect has been calculated according to Beavers and Joseph’s slip conditions. The modified Reynolds equation for the double-layered bearing system is solved to compute a dimensionless pressure profile and load-bearing capacity (LBC). The graphical results of the study reveal that the LBC increases in the case of magnetization, volume concentration and upper plate’s curvature parameter while it decreases with other parameters for both the film thickness profile. A comparative study suggests that the exponential film thickness profile is more suitable to enhance LBC for the annular plates lubricated by ferrofluid, including the presence of a slip. The study shows that the slip model performed quite well and there is a potential for improving the performance efficiency. Besides, multiple methods have been presented to enhance the performance of the above mentioned bearing system by selecting various combinations of parameters governing the system.
具有滑移速度的双层多孔挤压弯曲环板铁磁流体润滑的对比研究
本文致力于对考虑滑动速度的弯曲环形板中多孔挤压膜的基于Shliomis模型的铁磁流体(FF)润滑性能进行比较研究。采用修正的达西定律来寻找双层孔隙度的影响,同时根据Beavers和Joseph的滑动条件计算滑动速度效应。求解了双层轴承系统的修正雷诺方程,计算了无量纲压力分布和承载能力。研究的图形结果表明,对于薄膜厚度分布,LBC在磁化强度、体积浓度和上板曲率参数的情况下增加,而在其他参数的影响下减小。一项比较研究表明,指数膜厚度分布更适合于增强铁磁流体润滑的环形板的LBC,包括滑动的存在。研究表明,滑移模型表现良好,有可能提高性能效率。此外,已经提出了多种方法来通过选择控制系统的各种参数组合来提高上述轴承系统的性能。
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来源期刊
Acta Polytechnica
Acta Polytechnica ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
12.50%
发文量
49
审稿时长
24 weeks
期刊介绍: Acta Polytechnica is a scientific journal published by CTU in Prague. The main title, Acta Polytechnica, is accompanied by the subtitle Journal of Advanced Engineering, which defines the scope of the journal more precisely - Acta Polytechnica covers a wide spectrum of engineering topics, physics and mathematics. Our aim is to be a high-quality multi-disciplinary journal publishing the results of basic research and also applied research. We place emphasis on the quality of all published papers. The journal should also serve as a bridge between basic research in natural sciences and applied research in all technical disciplines. The innovative research results published by young researchers or by postdoctoral fellows, and also the high-quality papers by researchers from the international scientific community, reflect the good position of CTU in the World University Rankings. We hope that you will find our journal interesting, and that it will serve as a valuable source of scientific information.
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