Comparison of Separation Control Mechanisms for Synthetic Jet and Plasma Actuators

被引:1
|
作者
Abe, Yoshiaki [1 ,6 ]
Nonomura, Taku [2 ]
Sato, Makoto [3 ]
Aono, Hikaru [4 ]
Fujii, Kozo [5 ]
机构
[1] Univ Tokyo, Dept Aeronaut & Astronaut, Yokohama 2525210, Japan
[2] Tohoku Univ, Dept Aerosp Engn, Sendai 9808579, Japan
[3] Kogakuin Univ, Dept Mech Sci & Engn, Tokyo 1638677, Japan
[4] Shinshu Univ, Dept Mech Engn & Robot, Nagano 3868567, Japan
[5] Tokyo Univ Sci, Dept Informat & Comp Technol, Tokyo 1258585, Japan
[6] Tohoku Univ, Inst Fluid Sci, Sendai 9808577, Japan
关键词
flow control; separation control; synthetic jet; plasma actuator; CFD; LES; FINITE-DIFFERENCE SCHEMES; FLOW REATTACHMENT; FREQUENCY;
D O I
10.3390/act12080322
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This study numerically investigated the mechanisms of separation control using a synthetic jet (SJ) and plasma actuator (PA) around an NACA0015 airfoil at the chord Reynolds number of 63,000. Both SJ and PA were installed on the leading edge with the same order of input momentum (C mu = O(10(-3)-10 (-5))) and the same actuation frequencies in F+ = 1.0-30. The momentum coefficient C mu is defined as the normalized momentum introduced from the SJ or the PA, and F+ stands for the actuation frequency normalized by the chord length and uniform velocity. A number of large-eddy simulations (LES) were conducted for the SJ and the PA, and the mechanisms were clarified in terms of the exchange of chordwise momentum with Reynolds shear stress and coherent vortex structures. First, four main differences in the induced flows of the SJ and the PA were clarified as follows: (A) wall-tangential velocity; (B) three-dimensional flow structures; (C) spatial locality; and (D) temporal fluctuation. Then, a common feature of flow control by the SJ and the PA was revealed: a lift-to-drag ratio was found to be better recovered in F (+) = 6.0-20 than in other frequencies. Although there were differences in the induced flows, the phase decomposition of the flow fields identified common mechanisms that the turbulent component of the Reynolds shear stress mainly contributes to the exchange of the chordwise (streamwise) momentum; and the turbulent vortices are convected over the airfoil surface by the coherent spanwise vortices in the frequency of F (+)
引用
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页数:25
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