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R. C. Ramachandran, G. Raman, J. Subburaj and G. Jagadeesh, "Miniature Shock Tube Actuators for Flow Control Applications," in 48th Aerospace Sciences Meeting, AIAA 2010-1259, Orlando, FL, 2010.
J. Subburaj, G. Jagadeesh, R. C. Ramachandran and G. Raman, "Micro-Shock Tube Actuators for High Speed Air Vehicle Applications," in 48th AIAA Aerospace Sciences Meeting, AIAA 2010-1201, Orlando, FL, 2010.
G. Raman, "Supersonic jet screech: half-century from Powell to the present.," Journal of Sound and Vibration, vol. 214, p. 67, 1999.
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C. K. M. Tam and K. K. Auhja, "Theoretical model of discrete tone generation by impinging jets," Journal of Fluid Mechanics, vol. 214, p. 67, 1990.
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D. G. Crighton, "The jet edge-tone feedback cycle-linear theory for the operating stages," Journal of Fluid Mechanics, vol. 391, p. 234, 1992.
M. S. Howe, "Edge, cavity and aperture tones at very low Mach numbers," Journal of Fluid Mechanics, vol. 330, p. 24, 1997.
L. F. East, "Aerodynamically induced resonance in rectangular cavities," Journal of Sound and Vibration, vol. 3, p. 277, 1966.
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A. Powell, "On the edge tone," The Journal of the Acoustical Society of America, vol. 33, p. 395, 1961.
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J. E. Rossiter, "Wind-tunnel experiments on the flow over rectangular cavities at subsonic and transonic speeds," Aeronautical Research Council Reports and Memoranda, vol. 8, p. 343, 1964.
H. H. Heller, D. G. Holmes and E. E. Covert, "Flow induced pressure oscillations in shallow cavities.," Journal of Sound and Vibration, vol. 18, p. 545, 1970.
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L. N. Cattafesta, D. R. Williams, C. W. Rowley and F. Alvi, "Review of active control of flow-induced cavity resonance," AIAA Paper 3567:2003, 2003.
C. W. Rowley, D. R. Williams, T. Colonius, M. Murray and D. G. MacMynowski, "Linear models for control of cavity flow oscillations," Journal of Fluid Mechanics, vol. 547, p. 317, 2006.
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S. McGrath and L. Shaw, "Active control of shallow cavity acoustic resonance," AIAA paper, 1949:1996, 1996.
M. J. Stanek, G. Raman, V. Kibens, J. A. Ross, J. Odera and J. W. Peto, "Suppression of cavity resonance using high frequency forcing," AIAA paper, 2128:2001, 2001.
M. J. Stanek, G. Raman, J. A. Ross, J. Odera, J. W. Peto, F. Alvi and V. Kibens, "High frequency acoustic Suppression-The role of mass flow, the notion of superposition, and the role of inviscid Instability; A new model (Part II)," AIAA paper, 2404:2002, 2002.
M. J. Stanek, J. A. Ross, J. Odedra and J. W. Peto, "High frequency acoustic suppression- the mystery of the rod-in-crossflow revealed.," AIAA paper, 2404:2002, 2002.
M. Bastrzyk, Cavity noise suppression through shear layer liftoff, Chicago: MS thesis, Illinois Institute of Technology, 2009.
P. Panickar and G. Raman, "Using Linear Stability Analysis as a Tool to Evaluate Jet and Cavity Flow Control Situations," International Journal of Flow Control, vol. 1, p. 43, 2009.
Abstract
S. Sarpotdar, P. Panickar and G. Raman, "Linear Stability of a Hybrid Mean Velocity Profile and its Relevance to Cavity Resonance Suppression," Physics of Fluids, vol. 22, p. 43, 2010.
G. Raman, V. Kibens, A. Cain and J. Lepicovsky, "Advanced Actuator Concepts for Active Aeroacoustic Control," AIAA paper 2000-1930, 2000.
G. Raman and K. Srinivasan, "The powered resonance tube: From Hartmann's discovery to current active flow control applications," Progress in Aerospace Sciences, vol. 45, pp. 97-123, 2009.
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G. Raman, "Using Controlled Unsteady Fluid Mass Addition to Enhance Jet Mixing," AIAA Journal, vol. 35, no. 4, pp. 647-656, 1997.
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G. Raman and A. B. Cain, "Innovative actuators for active flow and noise control," Journal of Aerospace Engineering, vol. 216, pp. 303-324, 2002.
A. B. Cain, E. J. Kerschen and G. Raman, "Simulation of powered resonance tube excitation of a boundary layer," in 1stAIAA flow control conference, AIAA 2002-2821, St. Louis, June 2002.
R. Courant and K. O. Fredrichs, Supersonic Flow and Shock Waves, New York: Interscience, 1948.
G. Rudinger, Wave Diagrams for Non Steady Flow in Ducts, New York: Van Nostrand, 1955.
J. K. Wright, Shock Tubes, New York: John Wiely & Sons Inc., 1961.
J. N. Bradley, Shock Waves in Chemistry and Physiscs, New York: John Wiley & Sons Inc., 1962.
M. O. Sun and K. Takayama, "Shock propagation in narrow channels," in 22nd International Symposium on Shock Waves, 2001.
K. Ohashi and K. Takayama, "Characteristics of blast waves generated by milligram charges," in 22nd International Symposium on Shock Waves, 2001.
D. D. Dlott, "Nanoshocks in molecular materials," Accounts of Chemical Research, vol. 45, p. 33, 2000.
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G. Jagadeesh and J. Kawagishi, "A new micro-particle delivery system using laser ablation," in 22nd International Symposium on Shock Waves, 2001.
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International Journal of Flow Control

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