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On the Incorporation of Friction Into a Simultaneously Coupled Time Domain Model of a Rigid Rotor Supported by Air Foil Bearings

机译:关于将摩擦结合到气翼轴承支撑的刚性转子同时耦合时域模型中的应用

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摘要

Despite decades of research, the dynamics of air foil bearings (AFBs) are not yet fully captured by any model,suggesting that the fundamental mechanisms of the AFB and their relative merits are not yet fully understood. The recent years have seen promising results from nonlinear time domain models, allowing the dynamic pressure–compliance interaction and the unsteady terms of the compressible Reynolds equation to be considered. By including the simple elastic foundation model (SEFM) in a fully coupled simultaneous time integration, the dynamics of a rotor supported by industrial AFBs have previously been modelled by the authors, leading to good agreement with experimental results. In this paper, the authors investigate the substitution of the SEFM for a new foil structure model which is based on directly measurable quantities and includes frictional energy dissipation in the foil structure. An important finding is that the incorporation of a friction model into the global model cannotbe reconciled with a simultaneous time solution without the inclusion of the foil inertia. The resulting AFB modelallows the effects of friction on AFB performance to be directly examined and leads to the questioning of friction’s role and its significance to the operation of AFBs.
机译:尽管进行了数十年的研究,但任何模型都尚未完全掌握空气箔轴承(AFB)的动力学特性,这表明AFB的基本机理及其相对优点尚不完全清楚。近年来,非线性时域模型取得了令人鼓舞的结果,可以考虑动态压力-柔量相互作用以及可压缩雷诺方程的非稳态项。通过在完全耦合的同时时间积分中包括简单弹性基础模型(SEFM),作者先前已对工业AFB支持的转子动力学进行了建模,从而与实验结果取得了很好的一致性。在本文中,作者研究了SEFM替代基于新的箔结构模型的模型,该模型基于直接可测量的量并且包括箔结构中的摩擦能量耗散。一个重要的发现是,在不包含箔片惯性的情况下,将摩擦模型合并到全局模型中无法与同时的时间解决方案保持一致。由此产生的AFB模型允许直接检查摩擦对AFB性能的影响,并引起对摩擦的作用及其对AFB操作的重要性的质疑。

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