理论分析 MHD、耦合应力和滑移速度对粗糙三角板挤压膜润滑的影响

Q1 Chemical Engineering International Journal of Thermofluids Pub Date : 2024-09-24 DOI:10.1016/j.ijft.2024.100882
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引用次数: 0

摘要

在本研究中,克里斯滕森随机理论被用于粗糙表面的流体动力润滑效应,以研究表面粗糙度、耦合应力流体、滑移速度、磁流体动力学(MHD)和三角形表面如何相互作用。结合斯托克斯耦合应力理论、洛伦兹力和克里斯滕森流体动力润滑随机假说,分析得出了修正的雷诺方程。压力、承载能力和挤压膜时间表达式是利用考虑了表面粗糙度和耦合应力的雷诺方程从数学上推导出来的。针对不同的参数,包括粗糙度参数、滑移速度、哈特曼数和耦合应力,以图形方式分析了润滑特性。随着滑移速度、耦合应力和磁场的增加,挤压膜时间、承载能力和压力也随之增加。润滑特性会随着纵向(横向)粗糙度参数值的增加而降低(增加)挤压膜压力、承载能力和挤压膜时间。
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Theoretical analysis of effect of MHD, couple stress and slip velocity on squeeze film lubrication of rough Triangular plates
In this study, Christensen's stochastic theory is utilized on rough surfaces' hydrodynamic lubricating effect to examine how surface roughness, couple stress fluid, slip velocity, magnetohydrodynamic (MHD), and the triangular surface interact. Modified Reynolds equation is derived analytically using combining theories of Stokes couple stresses, Lorentz forces, and Christensen's stochastic hypothesis about hydrodynamic lubrication. Pressure, load carrying capacity and squeeze film time expression is derived mathematically using Reynolds equation that accounts for surface roughness and coupling stress. For various parameters including rough parameter, slip velocity, Hartmann number, and couple stress, the lubricating characteristics are analysed graphically. Squeeze film time, load carrying capacity, and pressure are enhanced by an increase in slip velocity, couplestress and magnetic field. The lubrication characteristics decreases (increases) on squeeze film pressure, load carrying capacity and squeeze film time through increasing values of the longitudinal (transverse) roughness parameter.
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来源期刊
International Journal of Thermofluids
International Journal of Thermofluids Engineering-Mechanical Engineering
CiteScore
10.10
自引率
0.00%
发文量
111
审稿时长
66 days
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