Dynamics and stability analysis of unbalance responses in mid-positioned electrically assisted turbocharger rotor

IF 3.4 Q1 ENGINEERING, MECHANICAL
Mingyue Hu, Shuqian Cao, Xiaolin Cao, Zhiyong Zhang, Rixiu Men, Zhenzhen You, Tianyou Wang
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Abstract

Electrically assisted turbochargers (EAT) improve intake efficiency by motor-assisted compressor impeller rotation, enhancing the system's transient response. However, the addition of motor rotor components has increased the number of unbalanced positions in the shaft system, leading to problems such as excessive compressor end vibration and complex changes in oil film stability. To evaluate the effects of unbalance in the motor rotor, along with the parameters of floating ring bearings (FRB), on the dynamic response of EAT, a finite element model of an EAT rotor supported by nonlinear FRB is developed, and the vibration response of the compressor end bearing is obtained by numerical integration. The results indicate: (1) In contrast to the effect of compressor and turbine unbalance, proper motor rotor unbalance is more effective in suppressing oil whirl instability in the high-speed operating range. However, a new inner oil film whirl “instability interval” is also induced in the low-speed operating range, leading to an increase in the Y1 compressor-end amplitude at low and medium speeds, and this “instability interval” increases with the amount of unbalance. (2) When an oil whirl occurs in the oil film, the maximum eccentricity of the bearing surges and is greater than 0.3, which can be used as an effective threshold for determining whether the oil film is unstable in engineering applications. (3) A suitable outer oil-film clearance range should be , otherwise, a wide range of outer oil-film whirl instability occurs. Controlling the amount of unbalance and oil-film clearance to suppress the sub-synchronous vibration of the EAT, provides a theoretical basis for the design of the dynamics of the nonlinear rotor bearing system and improves the stability of the turbocharger's operation.

Abstract Image

中置电动增压器转子不平衡响应的动力学与稳定性分析
电动辅助涡轮增压器(EAT)通过电机辅助压缩机叶轮旋转来提高进气效率,增强系统的瞬态响应。然而,电动机转子部件的加入增加了轴系中不平衡位置的数量,导致压缩机端部振动过大、油膜稳定性变化复杂等问题。为了评估电机转子不平衡以及浮圈轴承参数对转子动态响应的影响,建立了非线性浮圈轴承支承的转子有限元模型,并通过数值积分得到了压缩机端部轴承的振动响应。结果表明:(1)与压气机和涡轮不平衡相比,适当的电机转子不平衡对高速工况下油旋失稳的抑制效果更好。然而,在低速运行范围内,也会产生新的内油膜旋转“不稳定区间”,导致Y1压气机中低速端幅值增大,且该“不稳定区间”随着不平衡量的增大而增大。(2)当油膜内发生油涡时,轴承的最大偏心振荡且大于0.3,可作为工程应用中判断油膜是否不稳定的有效阈值。(3)外油膜间隙应有合适的范围,否则会发生大范围的外油膜旋流不稳定。通过控制转子的不平衡量和油膜间隙抑制EAT的次同步振动,为非线性转子轴承系统的动力学设计提供了理论依据,提高了增压器运行的稳定性。
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