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典型文献
Vortex dynamics and entropy generation in separated transitional flow over a compressor blade at various incidence angles
文献摘要:
The transition process within a Laminar Separation Bubble (LSB) that formed on a com-pressor blade surface was investigated using Large Eddy Simulations (LESs) at a Reynolds number of 1.5 × 105 and incidence angles of 0°,+ 3°,and + 5°.The vortex dynamics in the separated shear layers were compared at various incidence angles and its effects on the loss generation were clarified through entropy analysis.Results showed that transition onset,which was accurately identified by the Linear Stability Theory (LST),was significantly promoted at the increased incidence angle.As such,the development of LSB was suppressed and the relative role of viscous instability played in the transition process was weakened.At the incidence angle of 0°,two-dimensional spanwise vor-tices detached from the blade surface and rolled up periodically,which were further stretched and eventually evolved into large-scale hairpin vortices.As time passed,the fully developed hairpin vor-tices broke down into small-scale eddies.Meanwhile,the flow near the wall reversely ejected into the outer separated shear layers and a sweeping process happened subsequently,forcing the separated shear layers to reattach and accelerating the generation of turbulent fluctuations.By comparison,the strength of vortex rolling-up was weakened at higher incidence angles,and the vortex pairing and breakdown of large-scale vortices were less pronounced.Therefore,the level of turbulent fluc-tuations that generated in the separated shear layers was reduced.Detailed entropy analysis showed that the turbulent dissipation effect related to the Reynolds shear stresses determined the largest amount of positive entropy generation,which declined to a lower level as the incidence angle increased from 0° to + 5°.Correspondingly,the profile loss was reduced by 50.4%.
文献关键词:
作者姓名:
Mingyang WANG;Ziliang LI;Ge HAN;Chengwu YANG;Shengfeng ZHAO;Yanfeng ZHANG;Xin'gen LU
作者机构:
Key Laboratory of Light-Duty Gas-Turbine,Institute of Engineering Thermophysics,Chinese Academy of Sciences,Beijing 100190,China;University of Chinese Academy of Sciences,Beijing 100049,China
引用格式:
[1]Mingyang WANG;Ziliang LI;Ge HAN;Chengwu YANG;Shengfeng ZHAO;Yanfeng ZHANG;Xin'gen LU-.Vortex dynamics and entropy generation in separated transitional flow over a compressor blade at various incidence angles)[J].中国航空学报(英文版),2022(03):42-52
A类:
Laminar,LESs,reattach,tuations
B类:
Vortex,dynamics,entropy,generation,separated,transitional,flow,over,compressor,blade,various,incidence,angles,process,within,Separation,Bubble,LSB,that,formed,surface,was,investigated,using,Large,Eddy,Simulations,Reynolds,number,vortex,shear,layers,were,compared,its,effects,loss,clarified,through,analysis,Results,showed,onset,which,accurately,identified,by,Linear,Stability,Theory,LST,significantly,promoted,increased,such,development,suppressed,relative,role,viscous,instability,played,weakened,At,two,dimensional,spanwise,detached,from,rolled,periodically,further,stretched,eventually,evolved,into,scale,hairpin,vortices,passed,fully,developed,broke,small,eddies,Meanwhile,wall,reversely,ejected,outer,sweeping,happened,subsequently,forcing,accelerating,turbulent,fluctuations,By,comparison,strength,rolling,higher,pairing,breakdown,less,pronounced,Therefore,level,generated,reduced,Detailed,dissipation,related,stresses,determined,largest,amount,positive,declined,lower,Correspondingly,profile
AB值:
0.501451
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