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Erschienen in: Experiments in Fluids 6/2011

01.12.2011 | Research Article

On factors influencing arc filament plasma actuator performance in control of high speed jets

verfasst von: Casey Hahn, Martin Kearney-Fischer, Mo Samimy

Erschienen in: Experiments in Fluids | Ausgabe 6/2011

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Abstract

Localized arc filament plasma actuators (LAFPAs) have been developed and used at The Gas Dynamics and Turbulence Laboratory for the purpose of controlling high-speed and high Reynolds number jets. The ability of LAFPAs for use in both subsonic and supersonic jets has been explored, and experiments to date have shown that these actuators have significant potential for mixing enhancement and noise control applications. While it has been established that the actuators manipulate instabilities of the jet, the exact nature of how the actuation couples to the flow is still unclear. All of the results previously reported have been based on a nozzle extension that has an azimuthal groove of 1 mm width and 0.5 mm depth along the inner surface approximately 1 mm upstream of nozzle extension exit. The ring groove was initially added to shield the plasma arcs from the high-momentum flow. However, the effect of the ring groove on the actuation mechanism is not known. To explore this effect, a new nozzle extension is designed, which relocates the actuators to the nozzle extension face and eliminates the ring groove. Schlieren images, particle image velocimetry and acoustic results of a Mach 0.9 jet of Reynolds number ~6.1 × 105 show similar trends and magnitudes with and without a ring groove. Thus, it is concluded that the ring groove does not play a primary role in the LAFPAs’ control mechanism. Furthermore, the effect of the duty cycle of the actuator input pulse on the LAFPAs’ control authority is investigated. The results show that the minimum duty cycle that provides complete plasma formation has the largest control over the jet.

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Literatur
Zurück zum Zitat Ahuja KK, Blakney DF (1985) Tone excited jets, part IV: acoustic measurements. J Sound & Vib 102(1):93–117CrossRef Ahuja KK, Blakney DF (1985) Tone excited jets, part IV: acoustic measurements. J Sound & Vib 102(1):93–117CrossRef
Zurück zum Zitat Ahuja KK, Whipkey RR, Jones GS (1983) Control of turbulent boundary layer flows by sound. AIAA Paper 1983–0726 Ahuja KK, Whipkey RR, Jones GS (1983) Control of turbulent boundary layer flows by sound. AIAA Paper 1983–0726
Zurück zum Zitat Arakeri VH, Krothapalli A, Siddavaram V, Alkislar MB, Lourenco LM (2003) On the use of microjets to suppress turbulence in a Mach 0.9 axisymmetric jet. J Fluid Mech 490:75–98MATHCrossRef Arakeri VH, Krothapalli A, Siddavaram V, Alkislar MB, Lourenco LM (2003) On the use of microjets to suppress turbulence in a Mach 0.9 axisymmetric jet. J Fluid Mech 490:75–98MATHCrossRef
Zurück zum Zitat Brown GL, Roshko A (1974) On density effects and large structure in turbulent mixing layers. J Fluid Mech 64(4):775–816CrossRef Brown GL, Roshko A (1974) On density effects and large structure in turbulent mixing layers. J Fluid Mech 64(4):775–816CrossRef
Zurück zum Zitat Callender B, Gutmark E, Martens S (2005) Far-field acoustic investigation into Chevron nozzle mechanisms and trends. AIAA J 43(1):87–95CrossRef Callender B, Gutmark E, Martens S (2005) Far-field acoustic investigation into Chevron nozzle mechanisms and trends. AIAA J 43(1):87–95CrossRef
Zurück zum Zitat Cohen J, Wygnanski I (1987) The evolution of instabilities in the axisymmetric jet. Part 1. The linear growth of disturbances near the nozzle. J Fluid Mech 176:191–219CrossRef Cohen J, Wygnanski I (1987) The evolution of instabilities in the axisymmetric jet. Part 1. The linear growth of disturbances near the nozzle. J Fluid Mech 176:191–219CrossRef
Zurück zum Zitat Corke TC, Shakib F, Nagib HM (1991) Mode selection and resonant phase locking in unstable axisymmetric jets. J Fluid Mech 223:253–311CrossRef Corke TC, Shakib F, Nagib HM (1991) Mode selection and resonant phase locking in unstable axisymmetric jets. J Fluid Mech 223:253–311CrossRef
Zurück zum Zitat Gaitonde DV (2009) Simulation of supersonic nozzle flows with plasma-based control. AIAA Paper 2009–4187 Gaitonde DV (2009) Simulation of supersonic nozzle flows with plasma-based control. AIAA Paper 2009–4187
Zurück zum Zitat Gaitonde DV, Samimy M (2010) Effect of plasma-based azimuthal mode excitation on supersonic jet flow. AIAA Paper 2010–4416 Gaitonde DV, Samimy M (2010) Effect of plasma-based azimuthal mode excitation on supersonic jet flow. AIAA Paper 2010–4416
Zurück zum Zitat Grosch CE, Seiner JM, Hussaini MY, Jackson TL (1997) Numerical simulation of mixing enhancement in a hot supersonic jet. Phys Fluids 9(4):1125–1143CrossRef Grosch CE, Seiner JM, Hussaini MY, Jackson TL (1997) Numerical simulation of mixing enhancement in a hot supersonic jet. Phys Fluids 9(4):1125–1143CrossRef
Zurück zum Zitat Heeb N, Munday D, Gutmark E, Liu J, Kailasanath K (2010) Supersonic jet noise reduction by Chevrons enhanced with fluidic injection. AIAA Paper 2010–4847 Heeb N, Munday D, Gutmark E, Liu J, Kailasanath K (2010) Supersonic jet noise reduction by Chevrons enhanced with fluidic injection. AIAA Paper 2010–4847
Zurück zum Zitat Ho C-M, Huerre P (1984) Perturbed free shear layers. Ann Rev Fluid Mech 16:365–424CrossRef Ho C-M, Huerre P (1984) Perturbed free shear layers. Ann Rev Fluid Mech 16:365–424CrossRef
Zurück zum Zitat Jubelin B (1980) New Experimental studies on jet Noise amplification. AIAA Paper 1980–0961 Jubelin B (1980) New Experimental studies on jet Noise amplification. AIAA Paper 1980–0961
Zurück zum Zitat Kearney-Fischer M, Samimy M (2010) Noise control of a high Reynolds number mach 1.3 heated jet using plasma actuators. AIAA Paper 2010–13 Kearney-Fischer M, Samimy M (2010) Noise control of a high Reynolds number mach 1.3 heated jet using plasma actuators. AIAA Paper 2010–13
Zurück zum Zitat Kearney-Fischer M, Kim J-H, Samimy M (2009a) Control of a high Reynolds number Mach 0.9 heated jet using plasma actuators. Phys Fluids 21:095101CrossRef Kearney-Fischer M, Kim J-H, Samimy M (2009a) Control of a high Reynolds number Mach 0.9 heated jet using plasma actuators. Phys Fluids 21:095101CrossRef
Zurück zum Zitat Kearney-Fischer M, Kim J-H, Samimy M (2009b) Noise control of a high Reynolds number mach 0.9 heated jet using plasma actuators. AIAA Paper 2009–3188 Kearney-Fischer M, Kim J-H, Samimy M (2009b) Noise control of a high Reynolds number mach 0.9 heated jet using plasma actuators. AIAA Paper 2009–3188
Zurück zum Zitat Kearney-Fischer M, Kim J-H, Samimy M (2010) Flow control of a high Reynolds number mach 1.3 heated jet using plasma actuators. AIAA Paper 2010–4418 Kearney-Fischer M, Kim J-H, Samimy M (2010) Flow control of a high Reynolds number mach 1.3 heated jet using plasma actuators. AIAA Paper 2010–4418
Zurück zum Zitat Kim J-H, Samimy M (1999) Mixing enhancement via nozzle trailing edge modifications in a high speed rectangular jet. Phys Fluids 11(9):2731–2742MATHCrossRef Kim J-H, Samimy M (1999) Mixing enhancement via nozzle trailing edge modifications in a high speed rectangular jet. Phys Fluids 11(9):2731–2742MATHCrossRef
Zurück zum Zitat Kim J-H, Kastner J, Samimy M (2009a) Active control of a high Reynolds number mach 0.9 axisymmetric jet. AIAA J 47(1):116–128CrossRef Kim J-H, Kastner J, Samimy M (2009a) Active control of a high Reynolds number mach 0.9 axisymmetric jet. AIAA J 47(1):116–128CrossRef
Zurück zum Zitat Kim J-H, Kearney-Fischer M, Samimy M, Gogineni S (2009b) Active noise control in jets from conical and contoured supersonic nozzles with plasma actuators. AIAA Paper 2009–3187 Kim J-H, Kearney-Fischer M, Samimy M, Gogineni S (2009b) Active noise control in jets from conical and contoured supersonic nozzles with plasma actuators. AIAA Paper 2009–3187
Zurück zum Zitat Kim J-H, Nishihara M, Adamovich I, Samimy M, Gorbatov S, Pliavaka F (2010) Development of localized arc filament plasma actuators for high-speed and high Reynolds number flow control. Exp Fluids 49:497–511CrossRef Kim J-H, Nishihara M, Adamovich I, Samimy M, Gorbatov S, Pliavaka F (2010) Development of localized arc filament plasma actuators for high-speed and high Reynolds number flow control. Exp Fluids 49:497–511CrossRef
Zurück zum Zitat Laurendeau E, Jordan P, Bonnet JP, Delville J, Parnaudeau P, Lamballais E (2008) Subsonic jet noise reduction by fluidic control: The interaction region and the global effect. Phys Fluids 20:101519-1–101519-10CrossRef Laurendeau E, Jordan P, Bonnet JP, Delville J, Parnaudeau P, Lamballais E (2008) Subsonic jet noise reduction by fluidic control: The interaction region and the global effect. Phys Fluids 20:101519-1–101519-10CrossRef
Zurück zum Zitat Lu HY (1983) Effect of excitation on coaxial jet noise. AIAA J 21(2):214–220CrossRef Lu HY (1983) Effect of excitation on coaxial jet noise. AIAA J 21(2):214–220CrossRef
Zurück zum Zitat Moore CJ (1977) The role of shear-layer instability waves in jet exhaust noise. J Fluid Mech 80(2):321–367CrossRef Moore CJ (1977) The role of shear-layer instability waves in jet exhaust noise. J Fluid Mech 80(2):321–367CrossRef
Zurück zum Zitat Plaschko P (1979) Helical instabilities of slowly divergent jets. J Fluid Mech 92(2):209–215MATHCrossRef Plaschko P (1979) Helical instabilities of slowly divergent jets. J Fluid Mech 92(2):209–215MATHCrossRef
Zurück zum Zitat Saiyed NH, Mikkelsen KL, Bridges JE (2003) Acoustics and thrust of quiet separate-flow high-bypass-ratio nozzles. AIAA J 41(3):372–378CrossRef Saiyed NH, Mikkelsen KL, Bridges JE (2003) Acoustics and thrust of quiet separate-flow high-bypass-ratio nozzles. AIAA J 41(3):372–378CrossRef
Zurück zum Zitat Samimy M, Zaman KBMQ, Reeder MF (1993) Effect of tabs on the flow and noise field of an axisymmetric jet. AIAA J 31(4):609–619CrossRef Samimy M, Zaman KBMQ, Reeder MF (1993) Effect of tabs on the flow and noise field of an axisymmetric jet. AIAA J 31(4):609–619CrossRef
Zurück zum Zitat Samimy M, Adamovich I, Webb B, Kastner J, Hileman J, Keshav S, Palm P (2004) Development and characterization of plasma actuators for high-speed jet control. Exp Fluids 37(4):577–588CrossRef Samimy M, Adamovich I, Webb B, Kastner J, Hileman J, Keshav S, Palm P (2004) Development and characterization of plasma actuators for high-speed jet control. Exp Fluids 37(4):577–588CrossRef
Zurück zum Zitat Samimy M, Kastner J, Kim J-H, Utkin Y, Adamovich I, Brown C (2006) Flow and noise control in high speed and high Reynolds number jets using plasma actuators. AIAA Paper 2006–2846 Samimy M, Kastner J, Kim J-H, Utkin Y, Adamovich I, Brown C (2006) Flow and noise control in high speed and high Reynolds number jets using plasma actuators. AIAA Paper 2006–2846
Zurück zum Zitat Samimy M, Kim J-H, Kastner J, Adamovich I (2007a) Noise mitigation in high speed and high Reynolds number jets using plasma actuators. AIAA Paper 2007–3622 Samimy M, Kim J-H, Kastner J, Adamovich I (2007a) Noise mitigation in high speed and high Reynolds number jets using plasma actuators. AIAA Paper 2007–3622
Zurück zum Zitat Samimy M, Kim J-H, Kastner J, Adamovich I, Utkin Y (2007b) Active control of high-speed and high-Reynolds-number jets using plasma actuators. J Fluid Mech 578:305–330MATHCrossRef Samimy M, Kim J-H, Kastner J, Adamovich I, Utkin Y (2007b) Active control of high-speed and high-Reynolds-number jets using plasma actuators. J Fluid Mech 578:305–330MATHCrossRef
Zurück zum Zitat Samimy M, Kim J-H, Kastner J, Adamovich I, Utkin Y (2007c) Active control of a mach 0.9 jet for noise mitigation using plasma actuators. AIAA J 45(4):890–901CrossRef Samimy M, Kim J-H, Kastner J, Adamovich I, Utkin Y (2007c) Active control of a mach 0.9 jet for noise mitigation using plasma actuators. AIAA J 45(4):890–901CrossRef
Zurück zum Zitat Samimy M, Kim J-H, Kearney-Fischer M, Sinha A (2010) Acoustic and flow fields of an excited high Reynolds number axisymmetric supersonic jet. J Fluid Mech 656:507–529MATHCrossRef Samimy M, Kim J-H, Kearney-Fischer M, Sinha A (2010) Acoustic and flow fields of an excited high Reynolds number axisymmetric supersonic jet. J Fluid Mech 656:507–529MATHCrossRef
Zurück zum Zitat Utkin YG, Keshav S, Kim J-H, Kastner J, Adamovich IV, Samimy M (2007) Development and use of localized arc filament plasma actuators for high-speed flow control. J Phys D Appl Phys 40(3):685–694CrossRef Utkin YG, Keshav S, Kim J-H, Kastner J, Adamovich IV, Samimy M (2007) Development and use of localized arc filament plasma actuators for high-speed flow control. J Phys D Appl Phys 40(3):685–694CrossRef
Zurück zum Zitat Viswanathan K (2002) Analysis of the two similarity components of turbulent mixing noise. AIAA Journal 40(9):1735–1744MathSciNetCrossRef Viswanathan K (2002) Analysis of the two similarity components of turbulent mixing noise. AIAA Journal 40(9):1735–1744MathSciNetCrossRef
Zurück zum Zitat Winant CD, Browand FK (1974) Vortex pairing: the mechanism of turbulent mixing-layer growth at moderate Reynolds number. J Fluid Mech 63(2):237–255CrossRef Winant CD, Browand FK (1974) Vortex pairing: the mechanism of turbulent mixing-layer growth at moderate Reynolds number. J Fluid Mech 63(2):237–255CrossRef
Zurück zum Zitat Zaman KBMQ (2009) Jet noise reduction by microjets—a parametric study. AIAA Paper 2009–3129 Zaman KBMQ (2009) Jet noise reduction by microjets—a parametric study. AIAA Paper 2009–3129
Zurück zum Zitat Zaman KBMQ, Reeder MF, Samimy M (1994) Control of an axisymmetric jet using vortex generators. Phys Fluids 6(2):778–793CrossRef Zaman KBMQ, Reeder MF, Samimy M (1994) Control of an axisymmetric jet using vortex generators. Phys Fluids 6(2):778–793CrossRef
Metadaten
Titel
On factors influencing arc filament plasma actuator performance in control of high speed jets
verfasst von
Casey Hahn
Martin Kearney-Fischer
Mo Samimy
Publikationsdatum
01.12.2011
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 6/2011
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-011-1172-5

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