[1] Gbadebo S A, Cumpsty N A. Three-Dimensional Separations in Axial Compressors[J]. Journal of Turbomachinery, 2005, 127(2): 331-339.
[2] Weber A, Schreiber H A, Fuchs R. 3-D Transonic Flow in a Compressor Cascade with Shock-Induced Corner Stall[J]. Journal of Turbomachinery, 2002, 124(3): 358-366.
[3] Gbadebo S A, Cumpsty N A. Interaction of Tip Clearance Flow and Three- Dimensional Separations in Axial Compressors[J]. Journal of Turbomachinery, 2007, 129(4): 679-685.
[4] Gbadebo S A, Cumpsty N A, Hynes T. Control of Three Dimensional Separations in Axial Compressors by Tailored Boundary Layer Suction[J]. Journal of Turbomachinery, 2008, 130(l): l-8.
[5] Hubrich K, B?lcs A, Ott P. Boundary Layer Suction Via a Slot in a Transonic Compressor-Numerical Parameter Study and First Experiments[R]. ASME GT 2004-53758.
[6] Gümmer V, Goller M, Swoboda M. Numerical Investigation of Endwall Boundary Layer Removal on Highly Loaded Axial Compressor Blade Rows[J]. Journal of Turbomachinery, 2008, 130(1).
[7] Nerger D, Saathoff H, Gümmer V, et al. Experimental Investigation of Endwall and Suction Side Blowing in a Highly Loaded Compressor Stator Cascade[J]. Journal of Turbomachinery, 2011, 134(2): 1-12.
[8] Kerrebrock J L, Alan H, Ali A Merchant, et al. Design and Test of an Aspirated Counter-Rotating Fan[R]. ASME GT 2006-90582.
[9] Merchant A A. Experimental Investigation of High Pressure Ratio Aspirated Fan Stage[J]. Journal of Turbomachinery, 2005, 127(1): 43-51.
[10] P?nick S, Kozulovic D, Radespiel R, et al. Numerical and Experimental Investigations of a Compressor Cascade Flow with Secondary Air Removal[J]. Journal of Turbomachinery, 2013, 135(2): 1-10.
[11] Karsten L, Robert M, Christoph G, et al. On the Performance of Boundary Layer Suction for Secondary Flow Control in a High Speed Compressor Cascade[R]. AIAA 2013-2749.
[12] 周海, 李秋实, 陆亚钧. 跨音风扇转子叶片抽吸气数值试验探索[J]. 航空动力学报, 2004, 19(3): 408-412.
[13] 扈延林, 唐菲, 赵庆军, 等. 冲压叶栅边界层抽吸处理分析[J]. 推进技术, 2012, 33(3): 356-362. (HU Yan-lin, TANG Fei, ZHAO Qing-jun, et al. Numerical Investigation on the Effects of Boundary Layer Suction in a Ramrotor Cascade[J]. Journal of Propulsion Technology, 2012, 33(3): 356-362.)
[14] 王掩刚, 任思源, 牛楠, 等. 跨声速叶栅抽吸流、激波以及分离流相干效应[J]. 推进技术, 2011, 32(5):664-669. (WANG Yan-gang, REN Si-yuan, NIU Nan, et al. Investigation into Effect of Interaction Among Suction Flow, Shock Wave and Separation Flow for a Transonic Compressor Cascade[J]. Journal of Propulsion Technology, 2011, 32(5): 664-669.)
[15] Wang S T, Qiang X Q, Lin W C, et al. Highly Loaded Low Reaction Boundary Layer Suction Axial Flow Compressor[R]. ASME GT 2007-28191.
[16] Ling J, Du X, Wang S T, et al. Numerical Investigation of Corner Separation on Compressor Cascade[R]. ASME GT 2013-95194.
[17] Ding J, Chen S, Xu H, et al. Control of Flow Separations in Compressor Cascade by Boundary Layer Suction Holes in Suction Surface[R]. ASME GT 2013-94723.
[18] Zhang L X, Chen S W, Xu H, et al. Effect of Boundary Layer Suction on Aerodynamic Performance of High-Turning Compressor Cascade[R]. ASME GT 2013-94907.
[19] Strazisar A J, Wood J R, Hathaway M D, et al. Laser Anemometer Measurements in a Transonic Axial Flow Fan Rotor[R]. NASA TP-2879, 1989. (编辑:史亚红) * 收稿日期:2015-04-29;修订日期:2015-07-02。基金项目:国家重点基础研究发展计划(2010CB227302);国家自然科学基金(51206161)。作者简介:安鑫,男,硕士生,研究领域为内流气动热力学。E-mail: anxiniet@163.com
|