[1] Meierhofer B, Franklin C J. An Investigation of a Pre-Swirled Cooling Airflow to a Turbine Disc by Measuring the Air Temperature in the Rotating Channels[R]. ASME 81-GT-132.
[2] El-Oun Z B, Neller P H, Turner A B. Sealing of a Shrouded Rotor-Stator System with Preswirl Coolant[J].Journal of Turbomachinery, 1988, (110): 218-225.
[3] Wilson M, Pilbrow R, Owen J M. Flow and Heat Transfer in a Preswirl Rotor—Stator System[J]. Journal of Turbomachinery, 1997, 119(2): 364-373.
[4] Yan Y, Gord M F, Lock G D, et al. Fluid Dynamics of a Pre-Swirl Rotor-Stator System[J]. Journal of Turbomachinery, 2003, 125(4): 641-647.
[5] Farzaneh-Gord M, Wilson M, Owen J M. Numerical and Theoretical Study of Flow and Heat Transfer in a Pre-Swirl Rotor-Stator System[R]. ASME GT2005-68135.
[6] Lewis P, Wilson M, Lock G, et al. Effect of Radial Location of Nozzles on Performance of Pre-Swirl Systems[R]. ASME GT2008-50295.
[7] Lewis P. Pre-Swirl Rotor-Stator Systems: Flow and Heat Transfer[D]. United Kingdom: University of Bath, 2008.
[8] Kakade V. Fluid Dynamic and Heat Transfer Measurements in Gas Turbine Pre-Swirl Cooling Systems [D]. United Kingdom: University of Bath, 2009.
[9] Geis T, Rottenkolber G, Dittmann M, et al. Endoscopic PIV-Measurements in an Enclosed Rotor–Stator System with Pre-Swirled Cooling air[C]. Lisbon: Proceedings of the 11th International Symposium on Application of Laser Techniques to Fluid Mechanics, 2002.
[10] Jarzombek K, Benra F K, Dohmen H J, et al. CFD Analysis of Flow in High-Radius Pre-Swirl Systems[R]. ASME GT2007-27404.
[11] 朱强华, 吉洪湖, 张勃, 等. 预旋进气小尺寸涡轮叶片冷却的流场研究[J], 推进技术, 2012, 33(5): 732-739. (ZHU Qiang-hua, JI Hong-hu, ZHANG Bo, et al. Numerical Study of Pre-Swirl Flow in Rotating Cascade of a Small Gas Turbine[J]. Journal of Propulsion Technology, 2012, 33(5): 732-739.)
[12] 白洛林, 冯青. 湍流参数对复杂形状涡轮盘腔流场的数值研究[J]. 推进技术, 2003, 24(4): 344-347. (BAI Luo-lin, FENG Qing. Numerical Investigation of Turbulence Parameter on Flow Field of Rotating Disc Cavity with Complex Geometry[J]. Journal of Propulsion Technology, 2003, 24(4): 344-347.)
[13] Owen J M, Rogers R H. Flow and Heat Transfer in Rotating-Disc Systems, Volume 1: Rotor-Stator Systems[M]. Taunton: Research Studies Press, 1989.
[14] 林立. 燃气轮机转静系盘腔内流动传热机理研究[D]. 北京:清华大学, 2013.
[15] Zhou L, Zhu H, Li C. Three Dimensional Numerical Simulation of Flow and Heat Transfer in a Direct Transfer Preswirl System[C]. PRC: 2010 International Conference on Computer and Communication Technologies in Agriculture Engineering, 2010: 223-226.
[16] Laurello V, Masada J, Araki M, et al. Correlation of Pre-Swirl Effectiveness with the Turbulent Flow Parameter and Application to the Mitsubishi MF111 Up-Grade[R]. ASME GT2006-90182.
[17] Bricaud C, Geis T, Dullenkopf K, et al. Measurement and Analysis of Aerodynamic and Thermodynamic Losses in Pre-Swirl System Arrangements[R]. ASME GT2007-27191.
[18] Alexiou A, Mathioudakis K. Direct-Transfer Pre-Swirl System: Performance Modelling, Validation and Optimisation[C]. Graz Austria: 8th European Turbomachinery Conference Proceedings, 2009. * 收稿日期:2014-07-10;修订日期:2015-01-26。作者简介:林立,男,博士,讲师,研究领域为燃气轮机高温部件冷却研究及工业节能。E-mail: (编辑:张荣莉)
|