Numerical simulation and performance analysis of leaf seal
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摘要: 针对高速转子柔片式密封系统,建立了密封区域流场的数学模型,采用一种修正的压力耦合方程组的半隐式方法(Semi-Implicit Method for Pressure-Linked Equations Revised, SIMPLER)算法和有限差分法对数学模型进行数值求解,构建了柔片式密封性能分析程序,得到密封系统的压力场分布、速度场分布及泄漏量等,研究了不同结构参数和工况参数对密封性能的影响.分析结果表明:泄漏量随密封压差的增大呈线性增长趋势,而随转子转速的增大略有减小;增加柔片宽度、减小柔片长度、减小前/背板-转子间距均对降低密封系统的泄漏量有益,而柔片安装角度的变化则对密封系统的泄漏量影响不明显.基于流场的结果,柔片和转子的动力学响应将被研究.Abstract: In order to obtain the result of pressure and velocity distribution and leakage of the leaf seal system which is applied to high-speed rotor, a mathematical model of sealing zone flow field calculated numerically with SIMPLER method and finite difference method was established. A software based on the algorithm referred was also designed specially for the performance analysis of leaf seal system. The influence of different structure parameters and working conditions on the system's performance was discussed. Analysis result shows that the leakage increases linearly with the sealing pressure and decreases slightly with the increase of rotor speed. Increasing width, reducing spacing between front/back cover plate to rotor and decreasing length are beneficial in decreasing the leakage of the system. While changing installation angle direction of the leaf has little influence on leakage. Research on dynamic response between leaf and rotor will be carried out based on the results of the flow field.
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Key words:
- leaf seal /
- SIMPLER algorithm /
- Reynolds equation /
- flow field /
- performance analysis
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[1] 胡广阳. 航空发动机密封技术应用研究[J].航空发动机,2012,38(3):1-4. Hu G Y.Application research of seal technologies for aeroengine[J].Aeroengine,2012,38(3):1-4(in Chinese). [2] Aksit M F A. Computational study of brush seal contact loads with friction[D].New York:Rensselaer Polytechnic Institute, 1998. [3] 谢晓俊,康宁. 低泄漏高寿命刷式封严的数值计算[J].航空动力学报,2003,18(6):824-826. Xie X J,Kang N.Numerical of low and high endurance brush seal[J].Journal of Aerospace Power,2003,18(6):824-826(in Chinese). [4] 王之栎,梁小峰, 黄其武.刷式密封二维模型数值计算[J].航空动力学报,2008,23(8):1461-1465. Wand Z L,Liang X F,Huang Q W.Two-dimensional model mathematical simulation of brush seals[J].Journal of Aerospace Power,2008,23(8):1461-1465(in Chinese). [5] Jahn I H J, Franceschini G,Owen A K,et al.Experimental characterisation of the stiffness and leakage of a prototype leaf seal for turbine applications,ASME Paper GT2008-51206[R].Berlin:ASME,2008. [6] Jahn I H J, Gillespie D,Cooper P.Hydrodynamic air-riding in leaf seals,ASME Paper GT2013-95585[R].Berlin:ASME, 2013. [7] Flower R F J. Abdichtung:European,Patent EP0391676A1[P].1990-10-10. [8] Wright C. Resilient strip seal arrangement:United States,Patent US0006267381B1[P].2001-07-31. [9] Nakane H, Maekawa A,Akita E,et al.The development of high performance leaf seals,ASME Paper GT2002-30243[R].Berlin:ASME,2002. [10] Grondahl C M, Dudley J C.Film riding leaf seals for improved shaft sealing,ASME Paper GT2010-23629[R].Berlin:ASME, 2010. [11] Jahn I H J, Owen A K,Gillespie D.Negative stiffness in gas turbine leaf seals,ASME Paper GT2011-46483[R].Berlin:ASME, 2011. [12] 梁亚坤,王之栎, 王伟.柔片式密封泄漏量流动的数值仿真分析[J].航空动力学报,2013,28(9):1975-1979. Liang Y K,Wang Z L,Wang W.Numerical simulation and analysis of leaf leakage flow[J].Journal of Aerospace Power,2013,28(9):1975-1979(in Chinese). [13] 王福军. 计算流体动力学分析——CFD软件的原理与应用[M].北京:清华大学出版社,2004:10-11. Wang F J.Computational fluid dynamics analysis:Principle and application of CFD software[M].Beijing:Tsinghua University Press,2004:10-11(in Chinese). [14] 沈心敏,闻英梅, 孙希桐,等.摩擦学基础[M].北京:北京航空航天大学出版社,1988:57-59. Shen X M,Wen Y M,Sun X T,et al.Tribology foundation[M].Beijing:Beihang University Press,1988:57-59(in Chinese). [15] Patankar S V. 传热与流体流动的数值模拟[M].张政,译.北京:科学出版社,1984:130-157. Patankar S V.Numerical heat transfer and fluid flow[M].Translated by Zhang Z.Beijing:Science Press,1984:130-157(in Chinese). [16] 徐广州,马纲, 沈心敏.气体雷诺方程数值方法比较和压场的讨论[C]//2006全国摩擦学学术会议——纪念摩擦学40周年会议论文集.哈尔滨:中国机械工程学会摩擦学分会,2006:128-130. Xu G Z,Ma G,Shen X M.Comparison of numerical method for gas Reynolds equation and discussion of pressure field[C]//Proceedings of Symposium on Tribology in 2006:40th Anniversary of Tribology.Harbin:Tribology Institute of Chinese Mechanical Engineering Society,2006:128-130(in Chinese).
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