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Experimental investigation on a high subsonic compressor cascade flow

查看全文 作  者:Zhang [1,2]Haideng;Wu [1]Yun;Li [1]Yinghong;Lu [3]Huawei 高影响力作者 机构地区:[1]College of Aeronatutics and Aerospace, Airforce Engineering University;[2]School of Energy and Power, Beihang University;[3]Marine Engineering College, Dalian Marinetime University高影响力机构 出  处:《Chinese Journal of Aeronautics》索引2015年第28卷第4期,共10页高影响力期刊 基  金:supported by the National Natural Science Foundation of China (Nos.51336011, 50906100);the Science Foundation for the Author of National Excellent Doctoral Dissertation of China (No.201172);China Scholarship Council 摘  要:With the aim of deepening the understanding of high-speed compressor cascade flow,this paper reports an experimental study on NACA-65 K48 compressor cascade with high subsonic inlet flow.With the increase of passage pressurizing ability, endwall boundary layer behavior is deteriorated, and the transition zone is extended from suction surface to the endwall as the adverse pressure gradient increases.Cross flow from endwall to midspan, mixing of corner boundary layer and the main stream, and reversal flow on the suction surface are caused by corner separation vortex structures.Passage vortex is the main corner separation vortex.During its movement downstream, the size grows bigger while the rotating direction changes, forming a limiting circle.With higher incidence, corner separation is further deteriorated, leading to higher flow loss.Meanwhile, corner separation structure, flow mixing characteristics and flow loss distribution vary a lot with the change of incidence.Compared with low aspect-ratio model, corner separation of high aspect-ratio model moves away from the endwall and is more sufficiently developed downstream the cascade.Results obtained present details of high-speed compressor cascade flow,which is rare in the relating research fields and is beneficial to mechanism analysis, aerodynamic optimization and flow control design. 关 键 词:压气机叶栅 高亚音速 叶栅流 实验 流动损失 混合特性 分离涡 逆压梯度
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