| 1. | Reynolds s equation 雷诺方程 |
| 2. | Modified reynolds equation for squeeze - film air damping of slotted plates in mems devices 微机械槽板结构空气压膜阻尼的修正雷诺方程 |
| 3. | Reynolds ' s equation 雷诺方程 |
| 4. | Solving reynolds equation of journal bearing with block incomplete factorization method 求解径向滑动轴承雷诺方程的块不完全分解快速迭代算法研究 |
| 5. | Modeling the interaction of solitary waves and semi - circular breakwaters by using unsteady reynolds equations 用时变雷诺方程模型模拟孤立波与半圆型防波堤的相互作用 |
| 6. | Based on the unproved vof method , parametric studies have been carried out for random wave slamming on open piled wharf by numerical simulation . the governing equations are reynolds time - averaged equations and two equations k - model 为能反映出波浪冲击过程的湍流特征,以湍流运动方程? ?雷诺方程,及修正的?模型封闭雷诺方程为控制方程。 |
| 7. | Ph linearization method is employed to solve a nonlinear reynolds equation for a steady state and micro - scale flow field , and the approximate function expressions of gas dynamic pressure and velocity in the spiral groove are obtained 摘要应用ph线性化方法、迭代法,近似求解了螺旋槽内稳态微尺度流动场的非线性雷诺方程,求得了气体动压和速度分布的解析解。 |
| 8. | For the case of dynamically loaded er journal bearings , the effects of er fluids on the lubrication performance are numerically studied by simultaneously solving the reynolds equation and the journal motion equation 对于动载电流变滑动轴承的润滑问题,联立求解了基于电流变流体模型的动载雷诺方程和轴颈运动方程,分析了电流变效应对动载轴承润滑性能的影响。 |
| 9. | A general reynolds equation based on er fluid model is obtained , which can be easily extended to other non - newtonian fluids and this equation can provide theoretical basis for the hydrodynamic analysis of er journal bearings 首次推导了基于电流变流体的润滑问题广义雷诺方程,并可扩展到其他非牛顿流体的润滑问题,为进行基于电流变流体的滑动轴承流体动力润滑分析提供了理论依据。 |
| 10. | ( 2 ) the foil bearing is treated as a continuous flexible surface which is supported on an elastic foundation . the stiffness and damping of the film are assumed to be liner and constant everywhere . the fluid is modeled by using the reynolds equation for a compressible gas ( 2 )建立了具有线性结构刚度和阻尼的弹性箔片轴承模型,并对这一弹性流体动力润滑( ehdl )问题建立了由非定常可压缩雷诺方程和弹性箔片平衡方程及其边界条件组成的控制方程。 |