[1] Hergt A, Robert M, Karsten L, et al. A New Approach for Compressor Endwall Contouring[R]. ASME GT 2011-45858.
[2] 刘艳明, 钟兢军, 黄洪雁, 等. 端壁翼刀控制压气机叶栅二次流的机理研究[J]. 空气动力学报, 2005, 23(4): 431-436.
[3] 李军, 苏明. 不同翼刀位置控制涡轮叶栅二次流的数值研究[J]. 中国电机工程学报, 2008, 28(8): 16-21.
[4] 郑新前, 张杨军, 周盛. 合成射流控制压气机分流流动及工程应用探索[J]. 中国科技论文在线, 2008, 3(8): 547-552.
[5] 杨凌, 钟兢军, 韩少冰. 不同参数端壁翼刀对跨音速压气机环形叶栅二次流影响的数值研究[J]. 大连海事大学学报, 2011, 37(4): 30-34.
[6] 杨凌, 钟兢军, 严红明. 压气机环形叶栅中应用系里面翼刀的数值研究[J]. 工程热物理学报, 2010, 31(6): 938-942.
[7] Hergt A, Meyer R, Engel K. Experimental Investigation of Flow Control in Compressor Cascades[R]. ASME GT 2006-90415.
[8] Hergt A, Meyer R, Müller W. Loss Reduction in Compressor Cascades by Means of Passive Flow Control[R]. ASME GT 2008-50357.
[9] Ortmanns J, Pixberg C, Gümmer V. Numerical Investigation of Vortex Generators to Reduce Cross-Passage Flow Phenomena in Compressor Stator End-Walls[J].Proceedings of the Institution of Mechanical Part A: Journal of Power and Energy, 2011, 225: 876-885.
[10] 郭爽, 陈绍文, 陆华伟, 等. 组合抽吸对大转角扩压叶栅性能的影响[J]. 航空动力学报, 2010, 25(12): 2697-2703.
[11] 陈绍文, 郭爽, 宋宇飞, 等. 附面层抽吸对高负荷压气机叶栅流场的影响[J]. 推进技术, 2009, 30(5): 588-592. (CHEN Shao-wen, GUO Shuang, SONG Yu-fei, et al. Effects of the Boundary Layer Suction on the Flow Field of Highly-Loaded Compressor Cascades[J]. Journal of Propulsion Technology, 2009, 30(5): 588-592.)
[12] 刘小民, 高健, 王星. 压气机转子叶片附面层抽吸的参数化研究[J]. 流体机械, 2011, 39(3): 10-17.
[13] 周杨, 邹正平, 刘火星, 等. 边界层吹吸气对高负荷扩压叶栅性能的影响[J]. 推进技术, 2007, 28(6): 647-652. (ZHOU Yan, ZOU Zheng-ping, LIU Huo-xing, et al. Effects of Co-Flow Jets in Boundary Layer on Highly-Loaded Compressor Cascade Performance[J].Journal of Propulsion Technology, 2007, 28(6): 647-652.)
[14] 茅晓晨, 刘波, 曹志远, 等. 端壁射流对压气机叶栅角区分离控制的研究[J]. 推进技术, 2014, 35(12): 1615-1622. (MAO Xiao-chen, LIU Bo, CAO Zhi-yuan, et al. Research on Corner Separation Control for Compressor Cascade with End-Wall Jet Flow[J]. Journal of Propulsion Technology, 2014, 35(12): 1615-1622.)
[15] Wiederhold O, Hecklau M, King R, et al. Multivariable Control in a Critically Loaded Compressor Cascade[J]. International Journal of Flow Control, 2011, 2(4): 219-236.
[16] Zander V, Hecklau M, Nitsche W, et al. Active Flow Control by Means of Synthetic Jets on a Highly Loaded Compressor Cascade[J]. Proceedings of the Institution of Mechanical Part A: Journal of Power and Energy, 2011, 225(7): 897-906.
[17] 刘华坪, 陈焕龙, 李德雄, 等. 射流旋涡发生器控制大折转角扩压叶栅二次流[J]. 航空动力学报, 2015, 30(4): 838-845.
[18] 刘华坪, 卢炳潇. 射流旋涡发生器对高速扩压叶栅端区流动的影响研究[C]. 厦门:中国工程热物理年会热机气动热力学, 2015.
[19] Karsten L, Robert M. Evalution of Passive and Active Secondary Flow Control in a High Speed Compressor Cascade with Different Measurement Technique[J]. New Results in Numerical and Experimental Fluid Mechanics, 2013, 121: 125-133.
[20] 钟易成, 陈晓. 涡与涡以及涡与附面层之间相互作用的试验研究[J]. 航空动力学报, 1999, 14(1): 28-31.(编辑:朱立影) * 收稿日期:2015-12-22;修订日期:2016-03-08。基金项目:国家自然科学基金(51306042)。作者简介:刘华坪,男,博士,讲师,研究领域为叶轮机械流动机理及控制。E-mail: hgdlhp@163.com
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