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Simulation of mixed lubrication of rigid plain journal bearing by finite difference method with a skewed discretisation mesh

机译:偏心离散网格有限差分法模拟刚性滑动轴承的混合润滑

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摘要

Numerical simulation of lubrication of journal bearing often uses a rectangular discretisation mesh. Steady-state mixed hydro-dynamic lubrication of rigid plain journal bearing is investigated by using finite difference form of Patir-Cheng average Reynolds equation under Reynolds boundary condition. Two kinds of non-orthogonal discretisation meshes, i. e., helix mesh and symmetric herringbone mesh are considered respectively. Three difference schemes, i. e.: 1) central finite difference; 2) second order upwinding; 3) a new central finite difference considering the film thickness at the projected positions from the nodes of neighbouring rows; are used to difference the shear induced flow term (i. e., Couette term). The effectiveness of the three schemes is discussed using the skewed discretisation mesh by comparing theoretical predictions of load with that found in the literature for smooth lubrication using the rectangular discretisation mesh. The effect of the skewed angle of mesh on the predicted parameters such as load, friction coefficient, attitude angle and maximum pressure is investigated for both smooth and rough surfaces. It is found that generally these schemes may provide a reasonable satisfactory solution. However, when symmetric herringbone mesh is used, a larger relative deviation is found as the skewed angle is larger and the eccentricity ratio is smaller.
机译:轴颈轴承润滑的数值模拟通常使用矩形离散网格。利用雷诺边界条件下的Patir-Cheng平均雷诺方程的有限差分形式,研究了刚性滑动轴承的稳态混合流体动力润滑。两种非正交离散网格,即例如,分别考虑螺旋网格和对称人字形网格。三种不同的方案,i。 e .: 1)中心有限差分; 2)二阶上风; 3)考虑到相邻行的节点在投影位置的膜厚的新的中心有限差分;术语“差”用来使剪切引起的流量项(即库埃特项)不同。通过将载荷的理论预测与文献中使用矩形离散化网格进行平滑润滑的理论预测值进行比较,使用偏斜离散化网格讨论了三种方案的有效性。研究了光滑和粗糙表面的网格偏斜角对预测参数(如载荷,摩擦系数,姿态角和最大压力)的影响。已经发现,通常这些方案可以提供合理的令人满意的解决方案。但是,在使用对称的人字形网格的情况下,偏角越大,偏心率越小,则相对偏差越大。

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