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Comparative Studies on the dynamic performances of high speed turbocharger rotor supported on Oil-free bearings versus conventional floating ring systems

机译:无油轴承支撑的高速涡轮增压器转子与传统浮环系统的动态性能比较研究

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Present work focuses on the dynamic modelling of the dual-disc rotor supported on oil-free bearings idealizing a turbocharger rotor bearing system. The equations of motion of the rotor system are formulated and solved by finite element method to obtain the dynamic response of the system. The gas-foil bearing forces obtained from finite-difference approach at each time-step of solution. The same rotor model is used with the conventional floating ring bearing system where, the bearing forces are provided as displacement dependent time-varying oil and floating ring forces. As a practical environmental condition, the effect of temperature on the viscosity is studied using Dowson equation. The dynamic responses are illustrated both for rotor supported on both gas-foil and floating-ring type bearings. The effects of changes in bearing clearances on the overall dynamic characteristics of the rotor are reported. In order to utilize the gas foil bearing model, an identification study is performed to predict the operating clearance and air viscosity using dynamic response data.
机译:目前的工作集中在双盘转子的动态建模上,该双盘转子由无油轴承支撑,理想化了涡轮增压器转子轴承系统。通过有限元方法建立并求解转子系统的运动方程,得到系统的动态响应。通过有限差分法在求解的每个时间步获得的翼型轴承力。常规的浮动环轴承系统使用相同的转子模型,在该轴承系统中,轴承力作为与位移有关的时变油和浮动环力提供。作为实际的环境条件,使用道森方程研究了温度对粘度的影响。图示了在翼型轴承和浮环型轴承上支撑的转子的动态响应。报告了轴承游隙变化对转子整体动态特性的影响。为了利用气体箔片轴承模型,进行了识别研究,以使用动态响应数据预测运行间隙和空气粘度。

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