TANG Kai, LIU Zhi-gang, WANG Hui, DAI Qiu-lin, ZHAO Jian-tong, QING Ke-you, LIU Jian-peng. Experimental Investigation of Surface Roughness on Flow Around Forward-Skewed Compressor Blade[J]. Journal of Propulsion Technology, 2020, 41(8): 1710-1719.
[1] Morini M, Pinelli M, Spina P R, et al. Numerical Analysis of the Effects of Nonuniform Surface Roughness on Compressor Stage Performance[J]. Journal of Engineering for Gas Turbines and Power, 2011, 133(7).
[2] Fouflias D, Gannan A, Ramsden K, et al. CFD Predictions of Cascade Pressure Losses due to Compressor Fouling[R]. ASME 2009-GT-59158.
[3] Mesbah M, Arts T, Simon J F, et al. Numerical and Experimental Analysis of Surface Roughness Effects for Compressor Blades[R]. ISABE 2009-1151.
[4] Suder K L, Chima R V, Strazisar A J, et al. The Effect of Adding Roughness and Thickness to a Transonic Axial Compressor Rotor[J]. Journal of Turbomachinery, 1995, 117(4): 491-505.
[5] Syverud E, Bakken L E. The Impact of Surface Roughness on Axial Compressor Performance Deterioration[R]. ASME 2006-GT-90004.
[6] Back S C, Hobson G V, Song S J, et al. Effects of Reynolds Number and Surface Roughness Magnitude and Location on Compressor Cascade Performance[J]. Journal of Turbomachinery, 2012, 134(5).
[7] Leipold R, Boese M, Fottner L. The Influence of Technical Surface Roughness Caused by Precision Forging on the Flow around a Highly Loaded Compressor Cascade[J]. Journal of Turbomachinery, 2000, 122(3): 416-424.
[8] 王作彪. 表面粗糙度对压气机叶栅流动特性的影响[J]. 节能技术, 2015, 33(4): 345-348.
[9] 姚 君, 刘 红. 叶片表面粗糙度对透平叶栅气动性能影响的试验研究[J]. 燃气轮机技术, 2008, 21(2):28-31.
[10] 高丽敏, 蔡宇桐, 曾瑞慧, 等. 叶片加工误差对压气机叶栅气动性能的影响[J]. 推进技术, 2017, 38(3):525-531.
[11] 曹传军, 邱 毅, 李 斌. 亚声叶型前缘形状对压气机气动性能的影响[J]. 燃气涡轮试验与研究, 2018, 31(6): 1-7.
[12] 李 正, 余华蔚, 尹红顺, 等. 椭圆前缘锐化度对亚声速压气机叶片性能的影响[J]. 燃气涡轮试验与研究, 2018, 31(3): 14-17.
[13] 赵长宇, 李光里. 平面叶栅风洞的设计与研究[J]. 沈阳航空工业学院院报, 2009, 26(4): 15-18.
[14] 唐 凯, 葛 宁, 顾 杨, 等. 大攻角范围超声压气机叶栅激波波系研究[J]. 燃气涡轮试验与研究, 2016, 29(2): 12-15.
[15] 陈 鑫. 矩形叶栅风洞设计及流场品质分析[D]. 大连:大连海事大学, 2011.