A concept study on supersonic flow control using nanosecond pulsed plasma actuator is conducted by means of numerical simulation. The nanosecond plasma discharge is characterized by the generation of a micro-shock wave in ambient air and a residual heat in the discharge volume arising from the rapid heating of near-surface gas by the quick discharge. The residual heat has been found to be essential for the flow separation control over aerodynamic bodies like airfoil and backward-facing step. In this study, novel experiment is designed to utilize the other flow feature from discharge, i.e., instant shock wave, to control supersonic flow through shock-shock interaction. Both bow shock in front of a blunt body and attached shock anchored at the tip of supersonic projectile are manipulated via the discharged-induced shock wave in an appropriate manner. It is observed that drag on the blunt body is reduced appreciably. Meanwhile, a lateral force on sharp-edged projectile is produced, which can steer the body and give it an effective angle of attack. This opens a promising possibility for extending the applicability of this flow control technique in supersonic flow regime.
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April 2018
Research Article|
March 16 2018
A note on supersonic flow control with nanosecond plasma actuator
Special Collection:
Papers Selected from the Seventh International Symposium on Physics of Fluids
J. G. Zheng;
J. G. Zheng
1
School of Aerospace Engineering, Huazhong University of Science and Technology
, Wuhan 430074, Hubei, People’s Republic of China
2
Temasek Laboratories, National University of Singapore
, Singapore 117411
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Y. D. Cui
;
Y. D. Cui
2
Temasek Laboratories, National University of Singapore
, Singapore 117411
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J. Li;
J. Li
2
Temasek Laboratories, National University of Singapore
, Singapore 117411
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B. C. Khoo
B. C. Khoo
a)
2
Temasek Laboratories, National University of Singapore
, Singapore 117411
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a)
Author to whom correspondence should be addressed: mpekbc@nus.edu.sg
Physics of Fluids 30, 040907 (2018)
Article history
Received:
November 05 2017
Accepted:
January 27 2018
Citation
J. G. Zheng, Y. D. Cui, J. Li, B. C. Khoo; A note on supersonic flow control with nanosecond plasma actuator. Physics of Fluids 1 April 2018; 30 (4): 040907. https://doi.org/10.1063/1.5012054
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