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NUMERICAL RESEARCH ON WATER GUIDE BEARING OF HYDRO-GENERATOR UNIT USING FINITE VOLUME METHOD

机译:有限体积法对水轮发电机组导水轴承的数值研究

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With the consideration of the geometry of tilting pad journal bearing, a new form of the Reynolds equation was derived in this article. The film thickness, the squeeze motion of the journal and the rotation motion of the pad were explicitly contained in the equation. Based on this equation, together with the equilibrium equation of pad pivot, the water guide bearing used in the Gezhouba 10 F hydro-generator unit was numerically researched. The new Reynolds equation for the lubricating film was solved using Finite Volume (FV) discretization, Successive Over-Relaxation (SOR) iteration method and C++ code are included. According to the numerical solution, and the stability of the film and the influences of the film thickness, the journal squeeze effect and the pad rotation effect on film force were discussed. The results indicate that the squeeze effect can not be neglected, although the rotation effect is negligible for both low-speed and high-speed bearings, so the computing time could be greatly reduced.
机译:考虑到可倾瓦轴颈轴承的几何形状,本文推导了新形式的雷诺方程。膜厚,轴颈挤压运动和垫的旋转运动明确包含在方程式中。基于该方程,结合垫块枢轴的平衡方程,对葛洲坝10 F水轮发电机组所用的导水轴承进行了数值研究。使用有限体积(FV)离散化解决了新的润滑膜雷诺方程,包括了连续过度松弛(SOR)迭代方法和C ++代码。根据数值解,讨论了膜的稳定性以及膜厚度的影响,轴颈挤压效应和垫旋转效应对膜力的影响。结果表明,尽管低速和高速轴承的旋转效果都可以忽略,但挤压效果不能忽略,因此可以大大减少计算时间。

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