Experimental Validation of Numerical Simulations for an Acoustic Liner in Grazing Flow
暂无分享,去创建一个
Willie R. Watson | Christopher K. W. Tam | W. R. Watson | Nikolai N. Pastouchenko | C. Tam | Michael G. Jones
[1] Vincent Pagneux,et al. Acoustic impedance measurement with grazing flow , 2001 .
[2] Francois Vuillot,et al. Numerical and Experimental Study of Resonant Liners Aeroacoustic Absorption under Grazing Flow , 2010 .
[3] A. F. Charwat,et al. Correlation of the effects of grazing flow on the impedance of Helmholtz resonators , 1982 .
[4] Christopher K. W. Tam,et al. Wall boundary conditions for high-order finite-difference schemes in computational aeroacoustics , 1994 .
[5] Willie R. Watson,et al. A Quasi-3-D Theory for Impedance Eduction in Uniform Grazing Flow , 2005 .
[6] E. Covert,et al. Flow-Induced Pressure Oscillations in Shallow Cavities , 1971 .
[7] Daniel J. Bodony,et al. Numerical investigation and modelling of acoustically excited flow through a circular orifice backed by a hexagonal cavity , 2012, Journal of Fluid Mechanics.
[8] J. Bendat,et al. Random Data: Analysis and Measurement Procedures , 1987 .
[9] Ronald L. Panton,et al. Measurement of the acoustic impedance of an orifice under a turbulent boundary layer , 1976 .
[10] Christopher K. W. Tam,et al. Micro-fluid dynamics and acoustics of resonant liners , 1999 .
[11] Francois Vuillot,et al. Aircraft Fan Noise Absorption: DNS of the Acoustic Dissipation of Resonant Liners , 2009 .
[12] T. H. Melling,et al. The acoustic impendance of perforates at medium and high sound pressure levels , 1973 .
[13] Christopher K. W. Tam,et al. A NUMERICAL AND EXPERIMENTAL INVESTIGATION OF THE DISSIPATION MECHANISMS OF RESONANT ACOUSTIC LINERS , 2001 .
[14] Louis N. Cattafesta,et al. Real-Time Adaptive Control of Flow-Induced Cavity Tones , 2004 .
[15] C. Tam,et al. Computational Aeroacoustics: A Wave Number Approach , 2014 .
[16] Willie R. Watson,et al. A Computational and Experimental Study of Resonators in Three Dimensions , 2009 .
[17] U. Ingard,et al. Acoustic Circulation Effects and the Nonlinear Impedance of Orifices , 1950 .
[18] Willie R. Watson,et al. A computational and experimental study of slit resonators , 2003 .
[19] Christopher K. W. Tam,et al. Microfluid Dynamics and Acoustics of Resonant Liners , 2000 .
[20] Christopher K. W. Tam,et al. Multi-size-mesh Multi-time-step Dispersion-relation-preserving Scheme for Multiple-scales Aeroacoustics Problems , 2002 .
[21] L. J. Sivian. Acoustic Impedance of Small Orifices , 1935 .
[22] Qi Zhang,et al. Direct numerical simulation of three-dimensional honeycomb liners with turbulent boundary layer , 2012 .
[23] Daniel J. Bodony,et al. Numerical Simulation of Two-Dimensional Acoustic Liners with High-Speed Grazing Flow , 2011 .
[24] U. Ingard,et al. Acoustic Nonlinearity of an Orifice , 1967 .
[25] J. Kompenhans,et al. The acoustic impedance of orifices in the wall of a flow duct with a laminar or turbulent flow boundary layer , 1980 .
[26] S. L. Sarin,et al. An experimental study of the acoustic impedance of Helmholtz resonator arrays under a turbulent boundary layer , 1981 .
[27] C. Tam,et al. RADIATION AND OUTFLOW BOUNDARY CONDITIONS FOR DIRECT COMPUTATION OF ACOUSTIC AND FLOW DISTURBANCES IN A NONUNIFORM MEAN FLOW , 1996 .
[28] F. Hu. A Stable, perfectly matched layer for linearized Euler equations in unslit physical variables , 2001 .
[29] N. A. Halliwell,et al. Jet engine liner impedance: An experimental investigation of cavity neck flow/acoustics in the presence of a Mach 0·5 tangential shear flow , 1985 .
[30] C. Tam,et al. Dispersion-relation-preserving finite difference schemes for computational acoustics , 1993 .
[31] Christopher K. W. Tam,et al. Numerical simulation of a slit resonator in a grazing flow under acoustic excitation , 2008 .