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Three-Dimensional Finite Element Simulation of Nonlinear Dynamic Rotor Systems of a Turbocharger

机译:涡轮增压器非线性动态转子系统的三维有限元模拟

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This paper presents the modeling procedure for a high-velocity rotor system (RS) combined with sliding bearings. The equations for motion of the RS parts were derived based on the model of a rotating elastic medium. Lubrication layers have been calculated with the use of the Reynolds equations. The discretization of the RS model has been carried out using three-dimensional contact finite element method and two-dimensional method of finite differences. The integration with respect to time is performed by an absolutely stable step-by-step method. The paper also compares and discusses computed and experimental amplitude-frequency characteristics of the self-oscillating turbocharger's RS. The values of dynamic loads in parts, as well as reactions, clearances, and losses in bearings, computed based on the presented modeling procedure make the RS designing more accurate and reliable.
机译:本文介绍了结合了滑动轴承的高速转子系统(RS)的建模过程。 RS零件的运动方程式是根据旋转弹性介质的模型导出的。使用雷诺方程已计算出润滑层。 RS模型的离散化使用三维接触有限元法和二维有限差分法进行。关于时间的积分是通过绝对稳定的逐步方法执行的。本文还比较并讨论了自激式涡轮增压器RS的计算和实验幅度频率特性。根据提出的建模程序计算的零件动态载荷值以及轴承的反作用力,游隙和损耗使RS设计更加准确和可靠。

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