首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effect of Circumferential Location of Radial Injection on Rotordynamic Performance of Hybrid Air Foil Bearings
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Effect of Circumferential Location of Radial Injection on Rotordynamic Performance of Hybrid Air Foil Bearings

机译:径向注入的周向位置对混合翼型轴承旋转性能的影响

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摘要

Air foil bearings (AFBs) are introduced as promising bearings for oil:free turbomachinery applications. AFBs provide reliable operation at high speed and high temperature with negligible power loss. Hybrid air foil hearing (HAFB) technology utilizes the radial injection of externally pressurized air into the traditional hydrodynamic AFB's film thickness through orifices attached to the top foil. Previous studies have reported enhancement in the rotordynamic stability of HAFBs compared to traditional hydrodynamic AFBs. HAFBs have several orifices distributed in the circumferential direction. In this study, the effect of the circumferential location of radial injection on the rotordynamic performance of the rotor-HAFB is studied. Analytical and experimental evaluations of the rotordynamic performance of a rotor supported by two single-pad HAFBs are presented. Parametric studies are conducted using three sets of single-pad HAFBs. The circumferential locations of orifices are different for each set. The presented simulation analyses consist of time-domain orbit simulation and frequency-domain modal analysis. Imbalance responses of rotor-HAFB were measured with various orifice locations and the results agree well with predictions. Comparison of the rotordynamic performance of HAFBs with different orifice configurations demonstrates substantial improvement in rotordynamic stability as well as enhancement in the stiffness and damping coefficients of HAFBs by choosing the best circumferential location for radial injection to control rotor eccentricity and attitude angle.
机译:空气箔轴承(AFBs)作为无油涡轮机械应用中很有希望的轴承而推出。 AFB在高速和高温下提供可靠的运行,而功耗却可以忽略不计。混合式空气箔听力(HAFB)技术通过将外部加压空气通过附着在顶部箔上的孔口径向注入到传统流体动力AFB的膜厚中。先前的研究已报道,与传统的流体动力AFB相比,HAFB的转子动力稳定性得到了增强。 HAFB具有在圆周方向上分布的多个孔。在这项研究中,研究了径向喷射的圆周位置对转子HAFB转子动力学性能的影响。提出了由两个单垫式HAFB支撑的转子的转子动力学性能的分析和实验评估。使用三组单焊盘HAFB进行参数研究。孔的圆周位置对于每组是不同的。提出的仿真分析包括时域轨道仿真和频域模态分析。在不同的孔口位置测量了转子-HAFB的不平衡响应,结果与预测结果吻合良好。比较不同节流孔结构的HAFBs的转子动力学性能表明,通过选择最佳圆周位置进行径向注入以控制转子偏心率和姿态角,HAFBs的转子动力学稳定性得到了显着改善,并提高了HAFBs的刚度和阻尼系数。

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