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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Rotordynamic Modelling and Analysis of a Radial Inflow Turbine Rotor-Bearing System
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Rotordynamic Modelling and Analysis of a Radial Inflow Turbine Rotor-Bearing System

机译:径向进气涡轮转子轴承系统的转子动力学建模与分析

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摘要

One of the challenging aspects of radial turbine design and manufacturing is vibration and stability. Rotordynamic analysis was performed on a rotor-bearing system of a 1 kW_e radial inflow turbine. The objective of rotordynamic analysis is to determine suitable system configuration for stable operation in the design process. The rotor and blade design were previously developed using ANSYS Structural module which provides the mass and inertia of the complex blade geometry for the rotordynamic analysis. A simulation model with concentrated mass and inertia was built for the rotating structure using ANSYS Parametric Design Language (APDL) Modal and mass unbalance response analyses were carried out with six cases having different shaft diameters and bearing arrangements. The best case was chosen for further parametric study of the effects of shaft length, blade residual unbalance, and bearing stiffness on the blade displacement amplitude. Blade clearance was then set to determine acceptable shaft length, bearing arrangement, blade unbalance quality, and bearing stiffness.
机译:径向涡轮机设计和制造中具有挑战性的方面之一是振动和稳定性。转子动力分析是在1 kW_e径向流入涡轮机的转子轴承系统上进行的。转子动力学分析的目的是确定合适的系统配置,以在设计过程中稳定运行。转子和叶片的设计以前是使用ANSYS结构模块开发的,该模块为转子动力学分析提供了复杂叶片几何形状的质量和惯性。使用ANSYS参数化设计语言(APDL)为旋转结构建立了具有集中质量和惯性的仿真模型,对六种情况下的轴直径和轴承布置进行了模态和质量不平衡响应分析。选择最佳情况进行进一步的参数研究,以研究轴长,叶片残余不平衡以及轴承刚度对叶片位移幅度的影响。然后设置叶片间隙,以确定可接受的轴长,轴承布置,叶片不平衡质量和轴承刚度。

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