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Computational aeroacoustics - Issues and methods

AIAA Journal · 1995 · Vol. 33(10) · pp. 1788–1796
Christopher K. W. Tam

Abstract

Computational fluid dynamics (CFD) has made tremendous progress especially in aerodynamics and aircraft design over the past 20 years. An obvious question to ask is why not use CFD methods to solve aeroacoustics problems? Most aerodynamics problems are time independent, whereas aeroacoustics problems are, by definition, time dependent. The nature, characteristics, and objectives of aeroacoustics problems are also quite different from the commonly encountered CFD problems. There are computational issues that are unique to aeroacoustics. For these reasons computational aeroacoustics requires somewhat independent thinking and development. The objectives of this paper are twofold. First, issues pertinent to aeroacoustics that may or may not be relevant to computational aerodynamics are discussed. The second objective is to review computational methods developed recently that are designed especially for computational aeroacoustics applications. Some of the computational methods to be reviewed are quite different from traditional CFD methods. They should be of interest to the CFD and fluid dynamics communities.

Aerodynamics and Acoustics in Jet FlowsElectromagnetic Simulation and Numerical MethodsElectromagnetic Scattering and AnalysisComputational aeroacousticsAeroacousticsComputational fluid dynamicsAerodynamicsAerospace engineeringComputer scienceEngineeringSound pressure

Funding

  • National Aeronautics and Space Administration
  • Chinese Academy of Agricultural Sciences
Citations
527
FWCI
604.33
field-weighted impact
References
42
Percentile
100%
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References
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Journal of Computational Physics · 1992 · 3,329 citations
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Journal of Computational Physics · 1990 · 1,312 citations
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