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Research on Energy Equation of Lubrication Model on Large-scale Journal Bearing System

机译:大型轴承系统润滑模型能量方程研究

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To prolong the service life of large-scale journal bearings, the major factors that have influences on bearing performances should be taken into account. By consideration of the variations of viscosity and density with pressure and temperature, a more thorough thermo-hydrodynamic lubrication model was established. With designation of variables with nondimensional parameters, a series of equations were nondimensionied, and the corresponding energy equations at different oil-film layers and boundaries were obtained respectively according to proper difference formats, and then solved by the integration of Finite Difference Method (FDM) with Boundary Element Method (BEM). Calculation results have proved that such complete mathematical model could provide great theoretical guide meaning to improve the lubrication performances and to prolong the service life of contact components of heavy journal bearings.
机译:为了延长大型轴颈轴承的使用寿命,应考虑对轴承表现影响的主要因素。考虑到粘度和密度的变化和压力和温度,建立了一种更彻底的热液动力润滑模型。随着具有非潜能参数的变量的指定,一系列方程不受限制,并根据适当的差异格式分别获得不同的油膜层和边界处的相应能量方程,然后通过有限差分法(FDM)的集成来解决带边界元法(BEM)。计算结果证明,如此完整的数学模型可以提供良好的理论指导意义,以改善润滑性能,延长重型轴颈轴承接触部件的使用寿命。

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