西安交通大学叶轮机械研究所,西安,710049
网络首发:2012-05-10,
纸质出版:2012
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李志刚, 李军, 丰镇平. 袋型阻尼密封转子动力特性的多频单向涡动预测模型[J]. 西安交通大学学报, 2012,46(5):13-18+119.
Multiple Frequencies One-Dimensional Prediction Model of Rotordynamic Characteristics for Pocket Damper Seals[J]. 2012, 46(5): 13-18+119.
为了满足宽频域下阻尼密封转子动力特性的计算要求
针对单频涡动模型计算量大的问题
提出了采用动网格技术和非定常数值方法来预测袋型阻尼密封转子动力特性的多频单向涡动模型.以转子多频单向涡动位移作为激励信号
采用非定常方法和动网格技术进行了三维Reynolds-Averaged Navier-Stokes(RANS)方程的数值求解
从而获得了袋型阻尼密封的瞬时流体激振力.通过快速傅里叶变换
在频域内计算了10个频率的8个转子动力特性系数
并与实验值进行了比较.结果表明:数值计算得到的袋型阻尼密封转子动力特性系数与实验值吻合良好
从而验证了基于多频单向涡动模型的数值方法能够可靠预测袋型阻尼密封转子动力特性.
A multiple frequencies one-dimensional analysis model using unsteady Reynolds-Averaged Navier-Stokes(RANS)solutions and the mesh deformation method was proposed to meet the requirements of computing rotordyanmic characteristics for pocket damper seals in a large frequency range and avoid the heavy computational effort resulting from the single-frequency vibration model. A multiple-frequency one-dimensional periodic orbit for rotor surface was viewed as the excitation signal
and the unsteady solutions combined with the mesh deformation method were employed to solve the three-dimensional RANS equations and obtain the transient reaction forces on the PDS rotor surface. The rotor motion signal and reaction forces signal were transformed to the frequency domain using the fast Fourier transform(FFT)
and then the eight rotordynamic coefficients of the PDS were determined at ten different excitation frequencies. The results show that the predicted rotordynamic coefficients of the PDS by the present numerical method agree well with the experimental data
confirming that the multiple frequencies one-dimensional analysis model can be adopted for predicting the rotordynamic characteristics of the PDS.
VANCE J M. Machinery vibration and rotordynamics[M]. New York, USA: John Wiley & Sons, 2010: 271-272.
CHUPP R E, GHASRIPOOR F, TURNQUIST N A, et al. Advanced seals for industrial turbine applications: dynamic seal development [J]. ASME Journal of Propulsion and Power, 2002, 18(6): 1260-1266.
VANCE J M, SHULTZ R R. A new damper seal for turbomachinery [C]∥Proceedings of 14th Vibration and Noise Conference. New York, USA: ASME, 1993: 139-148.
ERTAS B H, GAMAL A, VANCE J. Rotordynamic force coefficients of pocket damper seals [J]. ASME Journal of Turbomachinery, 2006, 128(4): 725-737.
ERTAS B H, DELGADO A, VANNINI G. Rotordynamic force coefficients for three types of annular gas seals with inlet preswirl and high differential pressure ratio [C/CD]∥Proceedings of ASME Turbo Expo. New York, USA: ASME, 2011: 45556.
LI J, SAN ANDRE'S L, VANCE J M. A bulk-flow analysis of multiple-pocket gas damper seals [J]. ASME Journal of Engineering for Gas Turbines and Power, 1999, 121(2): 355-362.
晏鑫, 李军, 丰镇平. BULK FLOW方法分析孔型密封转子动力特性的有效性 [J].西安交通大学学报, 2009, 43(1): 24-28.
YAN Xin, LI Jun, FENG Zhenping. Validation of two-control-volume bulk flow method for rotordynamic characteristics of hole-pattern seals [J]. Journal of Xi'an Jiaotong University, 2009, 43(1): 24-28.
LI Zhigang, LI Jun, FENG Zhenping. Numerical investigations on the leakage flow characteristics of pocket damper seals[C/CD]∥Proceedings of ASME Turbo Expo. New York, USA: ASME, 2011: 45114.
YAN Xin, LI Jun, FENG Zhenping. Investigations on the rotordynamic characteristics of a hole-pattern seal using transient CFD and periodic circular orbit model [J/CD]. ASME Journal of Vibration and Acoustics, 2011, 133(4): 041007.
HIRANO T, GUO Z, KIRK R. Application of computational fluid dynamic analysis for rotating machinery: part II Labyrinth seal analysis [J]. ASME Journal of Engineering for Gas Turbines and Power, 2005, 127(10): 820-826.
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