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Aerodynamic plasma actuators: A directional micro-jet device

机译:空气动力学等离子体致动器:定向微喷设备

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In recent years electroaerodynamic actuators have been rather intensively studied in order to control airflow [H. Velkoff, R. Godfrey, J. of Heat Transfer 101 (1979) 157; S. El-Khabiry, G.M. Colver, Phys. Fluids 9 3 (1997) 587; A. Soldati, S. Banerjee, Phys. Fluids 10 (1998) 1742; R. Vilela Mendes, J.A. Dente, J. Fluids Eng. 120 (1998) 626; A. Schutze, et al., IEEE Trans. Plasma Sci. 26 6 (1998) 1685; G.M. Colver, S. El-Khabiry, IEEE Trans. Ind. Appl. 35 2 (1999) 387; J.R. Roth, D.M. Sherman, S.P. Wilkinson, AIAA J. 38 7 (2000) 1172; L. Leger, E. Moreau, G. Artana, G. Touchard, J. Electrost. 50-51 (2001) 300 [1-7]; W. Shy, B. Jayaraman, A. Andersson, J. Appl. Phys. 92 11 (2002) 6434; G. Artana, J. D'Adamo, L. Leger, E. Moreau, G. Touchard, AIAA J. 40 9 (2002) 1773; J.R. Roth, Phys. plasmas 10 5 (2003) 2117; K.T. Hyun, C.H. Chun, Exp. Fluids 35 (2003) 541; G. Artana, R. Sosa, E. Moreau, G. Touchard, Exp. in Fluids 35 (2003) 580; C.L. Enloe, T.E. McLaughlin, R.D. VanDyken, K.D. Kachner, E.J. Jumper, T.C. Corke, AIAA J. 42 3 (2004) 589; C.L. Enloe, T.E. McLaughlin, R.D. VanDyken, K.D. Kachner, E.J. Jumper, T.C. Corke, M. Post, O. Haddad, AIAA J. 42 3 (2004) 595; M. Samimy, I. Adamovich, B. Webb, J. Kastner, J. Hileman, S. Keshav, P. Palm, Exp. Fluids 37 (2004) 577; J.R Boeuf, L.C. Pitchford, J. Appl. Phys. 97 (2005); E. Moreau, A. Labergue, G. Touchard, J. Adv. Oxydation 8 2 (2005) 241; M. Forte, L. Leger, J. Pons, E. Moreau, G. Touchard, J. Electrost. 63 (2005) 929; J. Pons, E. Moreau, G. Touchard, J. Phys., D, Appl. Phys. 38 (2005) 3635; E. Moreau, C. Louste, G. Touchard, J. Electrost. 66 (2008) 107 [9-19]; G.I. Font, AIAA Journal 44 7 (2006) 1572; Y. Sung, W. Kim, M.G. Mungal, M.A. Cappeli, Exp. Fluids 41 (2006) 479; E. Moreau, L. Leger, G. Touchard, J. Electrost. 64 (2006) 215; R. Sosa, G. Artana, J. Electrost. 64 (2006) 604 [22-25]]. Their principle is to produce a plasma in which ions are submitted to electric field. Then, the molecules of air are drifted by ions, generating an "electric wind". In the LEA (Laboratoire d'Etudes Aerodynamiques), three kinds of actuators have been mainly performed and studied: the DC actuator, the DBD actuator and the sliding discharge actuator. In the present paper we will first examine briefly the setup of each kind of actuators and how they produce electric wind. Then we will describe a new kind of device based on two DBD actuators and performed to generate a micro-jet in an adjustable direction.
机译:近年来,对电动气动执行器进行了相当深入的研究,以控制气流[H。 Velkoff,R.Godfrey,J.传热101(1979)157; S.El-Khabiry,G.M.科尔弗,物理学。流体9 3(1997)587; A. Soldati,S。Banerjee,物理学流体(Fluids)10(1998)1742;美国国家石油公司(Science)。 R.Vilela Mendes,J.A. Dente,J。流体工程。 120(1998)626; A. Schutze等,IEEE Trans。等离子科学26 6(1998)1685; G.M. Colver,S。El-Khabiry,IEEE Trans。工业应用35 2(1999)387;罗思(R.D.M.) Sherman,S.P。Wilkinson,AIAA J. 38 7(2000)1172; L. Leger,E。Moreau,G。Artana,G。Touchard,J。Electrost。 50-51(2001)300 [1-7]; W. Shy,B。Jayaraman,A。Andersson,J。Appl。物理92 11(2002)6434; G.Artana,J.D'Adamo,L.Leger,E.Moreau,G.Touchard,AIAA J.40 9(2002)1773; J.R. Roth,物理学等离子体10 5(2003)2117; K.T.玄C.H.俊Exp流体35(2003)541; G. Artana,R。Sosa,E。Moreau,G。Touchard,实验。在Fluids 35(2003)580; C.L.恩洛(TE)麦克劳林(McLaughlin),范德肯(K.D.)卡赫纳(E.J. T.C.跳线Corke,AIAA J.42 3(2004)589; C.L.恩洛(TE)麦克劳林(McLaughlin),范德肯(K.D.)卡赫纳(E.J. T.C.跳线Corke,M.Post,O.Haddad,AIAA J.42 3(2004)595; M. Samimy,I。Adamovich,B。Webb,J。Kastner,J。Hileman,S。Keshav,P。Palm,实验。流体(Fluid)37(2004)577; J.R Boeuf,L.C. Pitchford,J.Appl。物理97(2005); E. Moreau,A。Labergue,G。Touchard,J。Adv。氧化8 2(2005)241; M. Forte,L。Leger,J。Pons,E。Moreau,G。Touchard,J。Electrost。 63(2005)929; J. Pons,E。Moreau,G。Touchard,J。Phys。,D,应用。物理38(2005)3635; E. Moreau,C。Louste,G。Touchard,J。Electrost。 66(2008)107 [9-19]; G.I.字体,AIAA Journal 44 7(2006)1572;宋永成(W. Kim,M.G.)蒙加尔(Mungal),卡佩里(M.A. Cappeli),实验流体41(2006)479; E. Moreau,L。Leger,G。Touchard,J。Electrost。 64(2006)215; R. Sosa,G。Artana,J。Electrost。 64(2006)604 [22-25]。它们的原理是产生等离子体,在该等离子体中离子被施加到电场中。然后,空气分子被离子漂移,产生“电风”。在LEA(Laboratoire d'Etudes Aerodynamiques)中,主要执行和研究了三种执行器:DC执行器,DBD执行器和滑动放电执行器。在本文中,我们将首先简要检查各种执行器的设置以及它们如何产生电风。然后,我们将描述一种基于两个DBD执行器的新型设备,该设备将执行以可调整方向生成微喷流的操作。

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