Direct Numerical Simulation of Supersonic Boundary-Layer Stabilization by Porous Coatings

Author(s):  
Ivan Egorov ◽  
Alexander Fedorov ◽  
Andrey Novikov ◽  
Vitaly Soudakov
AIAA Journal ◽  
2019 ◽  
Vol 57 (11) ◽  
pp. 5061-5065 ◽  
Author(s):  
R. Zhao ◽  
C. Y. Wen ◽  
T. H. Long ◽  
X. D. Tian ◽  
L. Zhou ◽  
...  

2019 ◽  
Vol 196 ◽  
pp. 00017
Author(s):  
Aleksey Yatskikh ◽  
Aleksander Semenov ◽  
Gleb Kolosov ◽  
Aleksander Kosinov ◽  
Yury Yermolaev

The influence of the parameters of the impulse action on the laminar supersonic flat-plate boundary layer on the excited localized perturbations is investigated at Mach 2. The influence of the duration of a pulsed discharge on the generated disturbances is studied experimentally. Also, a direct numerical simulation of the influence of the parameters of pulse injection on generated perturbations is carried out. It is obtained that as the duration of the action on the supersonic boundary layer increases, the amplitude of the generated disturbance increases. The velocity of the propagation downstream of localized disturbances in Mach 2 supersonic flat-plate boundary layer is estimated.


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