Ru-bing LIU ,Xiao-yin MEI ,Sheng-hh uiXUE ,Yu-wen LUU ,Zhe-zhee SU ,QiLIN
1School of Aerospace Engineering,Xiamen University,Xiame n 361102,China
2Fujian Key Laboratory of Plasma and Magnetic Resonance Research,Xiamen 361102,China
Table S1 Structural parameters of the plasma synthetic jet (PSJ)actuator
Fig.S1 Pressure-measurement section
Fig.S2 Discharge curr ent and voltage waveforms of the Marx generator.Loading voltage U=155kV;discharge frequency f=250Hz;duty cycleτ=10%.
Fig.S3. Shadowgraph imaages of the PSJ for different orifice diameters
Fig.S4 Time histories of jet front heights for different orifice diameters
Fig.S5 Time histories of jeet front speeds for different orifice diameters
Table S2 Average jet speed for different orifice diameters
Table S3 Four factors and their corresponding three levels in the orthogonal experiment method
Table S4 Orthogonal experiment table and experimental results
Fig.S6 Chordwise variation of the improvement in static pressure Cp
Fig..S7 Vorticity diagram at the duct outlet without and with PSJ actuator control
Fig.S8 Transverse velo city Uz chart in the outlet plane.(a) Without control,(b) With control
Fig.S9 Longitudinal velocity Vy chart in the outlet pl ane.(a) Without control,(b) With control
Fig.S10 Average total pressure recovery coefficiennt at the outlet ((a) without and (b) with the plasma jet actuator layout
Journal of Zhejiang University-Science A(Applied Physics & Engineering)2022年8期