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一种高效的叶轮机叶片气动阻尼计算方法
AN EFFICIENT METHOD ON AERODYNAMIC DAMPING COEFFICIENT CALCULATION FOR TURBOMACHINERY

查看参考文献24篇

张陈安 1   张伟伟 2   叶正寅 2   刘锋 2  
文摘 运用叠加原理,发展了一种可以运用于小振幅运动的叶轮机叶片非定常气动力降阶模型,并将该模型与传统的能量法相结合,提出了一种叶轮机叶片气动阻尼的高效求解方法,运用该方法求解叶轮机叶片的气动阻尼系数,对某个频率、某个模态只需要进行一次非定常计算,就可以求出所有叶间振动相角下的气动阻尼系数,提高了气动阻尼的求解效率.在STCF4和NASA Rotor 67两个算例上运用非定常雷诺平均N-S(RANS)方程和提出的降阶模型进行了对比计算.算例表明,在小振幅下该方法的计算结果与RANS方程计算得到的气动阻尼系数能很好地吻合,而计算效率相比多通道非定常RANS方程计算提升了近一个数量级,并且该方法还可以运用于有失谐情况的颤振分析,在工程上有较高的应用价值,
其他语种文摘 It is always difficult to perform aeroelastic analysis on turbomachinery efficiently and precisely due to the complexity of the flow field and structures. The authors develop an unsteady aerodynamic Reduced-Order-Model (ROM) which can be used on small amplitude vibrating blades of turbomachinery. Based on this ROM and classic energy method, an efficient method on aerodynamic damping coefficient calculation for turbomachinery is introduced. With this method, only one unsteady CFD computation is needed to calculate the aerodynamic damping coefficients at all Inter Blade Phase Angles (IBPA) under one specific modal and frequency. The aeroelastic characteristics of STCF4 and NASA Rotor 67 are analyzed by using this ROM with classic energy method. The numerical results indicate that the aerodynamic damping coefficients attained by ROM and unsteady RANS method agree well with each other in the condition of small amplitude of vibration. The efficiency is improved by almost 10 times than multi-passages RANS method. In addition, this ROM can be used in aeroelastic analysis with mistuning effects.
来源 力学学报 ,2011,43(5):826-833 【核心库】
关键词 叶轮机械 ; 气动弹性 ; 颤振 ; 降阶气动力模型 ; 气动阻尼
地址

1. 中国科学院力学研究所, 翼型、叶栅空气动力学国防科技重点实验室, 北京, 100190  

2. 西北工业大学, 翼型、叶栅空气动力学国防科技重点实验室, 西安, 710072

语种 中文
文献类型 研究性论文
ISSN 0459-1879
学科 航空
基金 国家自然科学基金 ;  中国航空科学基金 ;  西北工业大学基础研究基金资助项目
文献收藏号 CSCD:4313086

参考文献 共 24 共2页

1.  Mikolajczak AA. Advances in fan and compressor blade flutter analysis and predictions. Journal of Aircraft,1975,12(4):325-332 被引 4    
2.  周盛. 叶轮机气动弹性力学引论,1989:1-11 被引 3    
3.  Fleeter S. Aeroelasticity research for turbomachine applications. Journal of Aircraft,1979,16(5):320-326 被引 3    
4.  陈矛章. 风扇/压气机技术发展和对今后工作的建议. 航空动力学报,2002,17(1):1-15 被引 19    
5.  Verdon JM. Review of unsteady aerodynamic methods for turbomachinery aeroelastic and aeroacoustic applications. AIAA Journal,1993,31(2):235-250 被引 4    
6.  Lane F. System mode shapes in the flutter of compressor blade rows. Journal of the Aeronautical Sciences,1956,1:54-66 被引 19    
7.  Carta FO. Coupled blade-disc-shroud flutter instabilities in turbojet engine rotors. Journal of Engineering for Power,1967,89(3):419-426 被引 36    
8.  Cinnella P. A numerical method for turbomachinery aeroelasticity. Journal of Turbomachinery-Transactions of the ASME,2004,126(2):310-316 被引 11    
9.  Srivastava R. Aeroelastic analysis of turbomachinery.Part I-phase lagged boundary condition methods. International Journal of Numerical Methods for Head & Fluid Flow,2004,14(3):366-381 被引 4    
10.  Srivastava R. Aeroelastic analysis of turbomachinery.Part II-stability computations.. International Journal of Numerical Methods for Head & Fluid Flow,2004,14(3):382-402 被引 5    
11.  Gnesin V. A coupled fluid-structure analysis for 3D inviscid flutter of IV standard configuration. Journal of Sound and Vibration,2002,251:315-327 被引 6    
12.  胡运聪. 振动叶栅非定常气动力的数值分析及应用. 应用力学学报,2004,21(3):49-52 被引 4    
13.  Dowell EH. Eigenmode analysis in unsteady aerodynamics:reduced order models. Applied Mechanics Review,1997,50(6):371-386 被引 8    
14.  Dowell EH. Modeling of fluid structure interaction. Annual Review of Fluid Mechanics,2001,33:445-490 被引 33    
15.  Lucia DJ. Reduced-order modeling:new approaches for computational physics. Progress in Aerospace Sciences,2004,40(1):51-117 被引 42    
16.  Raveh DE. Computational-fluid-dynamics-based aeroelastic analysis and structural design optimization-a researcher's perspective. Computer Methods in Applied Mechanics and Engineering,2005,194:3453-3471 被引 9    
17.  张伟伟. 基于CFD的气动力建模及其在气动弹性中的应用. 力学进展,2008,38(1):77-86 被引 16    
18.  Zhang W. Reduced-Order-Model-based flutter analysis at high angle of attack. Journal of Aircraft,2007,44(6):2086-2089 被引 3    
19.  张伟伟. 基于ROM技术的阵风响应分析方法. 力学学报,2008,40(5):593-598 被引 10    
20.  Zhang W. ROM based aeroservoelastic analysis in transonic flow. Journal of Aircraft,2009,46(6):2178-2183 被引 3    
引证文献 9

1 苏丹 基于系统辨识技术的叶轮机非定常气动力建模方法 航空学报,2012,33(2):242-248
被引 5

2 张伟伟 一种基于CFD的叶轮机非定常气动力组合建模方法 推进技术,2012,33(1):37-42
被引 7

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