首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >A direct numerical approach to compute the nonlinear rotordynamic coefficient of the noncircular gas journal bearing
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A direct numerical approach to compute the nonlinear rotordynamic coefficient of the noncircular gas journal bearing

机译:一种计算非直线气流轴颈轴承非线性旋转动力系数的直接数值方法

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摘要

Gas bearings are extensively used in several industrial applications to support the rotating load at high speed due to its favorable characteristics. The numerical computation of the gas film damping and stiffness coefficients is a difficult task due to nonlinearity in the Reynolds equation for compressible lubricant. In the present work, a numerical method based on the finite element method is developed for the direct computation of gas film damping and stiffness coefficients. In this method, a double partial differential equation approach has been used to compute the dynamic characteristics. Further, the numerical results presented shows that the bearing ellipticity ratio significantly affects the nonlinear trajectory of the journal.
机译:由于其有利的特性,燃气轴承广泛用于多个工业应用中,以高速支撑旋转负荷。 由于可压缩润滑剂的雷诺式方程中的非线性,气体膜阻尼和刚度系数的数值计算是一种困难的任务。 在本作工作中,开发了一种基于有限元方法的数值方法,用于气膜阻尼和刚度系数的直接计算。 在该方法中,已经使用双部分微分方程方法来计算动态特性。 此外,所提出的数值结果表明,轴承椭圆度比显着影响了期刊的非线性轨迹。

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