Shao Xiaoying, Huang Chen, Zhang Yongbin
School of Intelligent Equipment Engineering, Wuxi Taihu University, Wuxi, Jiangsu Province, China.
College of Mechanical Engineering, Changzhou University, Changzhou, Jiangsu Province, China.
J Mol Model. 2025 Jan 27;31(2):67. doi: 10.1007/s00894-024-06258-8.
The flow equations are derived for describing the two-dimensional hybrid molecular-scale and continuum flows in the very small surface separation with inhomogeneous solid surfaces and they can be applied for designing the specific bearings. The aim of the present study is to solve this specific flow problem in engineering with normal computational cost. The flow factor approach model describes the flow of the molecule layer adjacent to the solid surface and the Newtonian fluid model describes the flow of the intermediate continuum fluid. By using these flow equations, the simulation results show that designing the inhomogeneous stationary surface can very significantly improve the load-carrying capacity of the hydrodynamic thrust bearing with low clearances.
The flow of the physically adsorbed layer is treated as non-continuum and it is modeled by the equivalent non-continuum flow model by considering the fluid molecules orientated normal to the solid surface. The fluid between the two adsorbed layers is treated as continuum and Newtonian. The slippage can occur between the adsorbed layer-solid surface interface. It is assumed as absent on the adsorbed layer-continuum fluid interface. The flow equations are derived according to the equilibrium of the momentum transfer in the surface clearance. The film pressures and carried load of the thrust bearing with low clearance and inhomogeneous surfaces are derived by applying the obtained flow equations.
推导了用于描述在具有不均匀固体表面的非常小的表面间距内的二维混合分子尺度和连续介质流动的流动方程,这些方程可用于设计特定的轴承。本研究的目的是以正常的计算成本解决工程中的这一特定流动问题。流动因子方法模型描述了与固体表面相邻的分子层的流动,牛顿流体模型描述了中间连续介质流体的流动。通过使用这些流动方程,模拟结果表明,设计不均匀的固定表面可以非常显著地提高低间隙流体动力推力轴承的承载能力。
将物理吸附层的流动视为非连续介质,并通过考虑垂直于固体表面取向的流体分子,用等效非连续介质流动模型对其进行建模。两个吸附层之间的流体被视为连续介质且为牛顿流体。在吸附层 - 固体表面界面处可能发生滑移。假定在吸附层 - 连续介质流体界面处不存在滑移。根据表面间隙中动量传递的平衡推导流动方程。通过应用所得到的流动方程,推导了低间隙和不均匀表面推力轴承的油膜压力和承载载荷。