Large Eddy Simulation of a High Subsonic Jet and Noise Generation

  • Fukuda, Yuya (Department of Aeronautics and Astronautics, School of Engineering, University of Tokyo) ;
  • Teramoto, Susumu (Department of Aeronautics and Astronautics, School of Engineering, University of Tokyo) ;
  • Nagashima, Toshio (Department of Aeronautics and Astronautics, School of Engineering, University of Tokyo)
  • 발행 : 2008.03.30

초록

For the purpose of improving accuracy in jet noise prediction and investigating its generation mechanism, high subsonic jets were computed by using compressible Large Eddy Simulation(LES), wherein the inflow forcing or disturbance added in the inflow shear layer was incorporated. The far-field Sound Pressure Levels(SPL) as well as the flow field resulted in good agreement with available experimental data by applying only the high azimuthal modes among the inflow forcing parameters. We found that this result was due to an important role of the inflow forcing upon breaking down the axiymmetric vortices that caused high amplitude velocity and pressure fluctuations. In order to examine generation mechanism of the dominant noise component, wavelet transformation was introduced to reveal the presence of a well-organized structure of pressure fluctuations that originated mainly from vortex motions near the end of the jet potential core. This structure took a train of alternately positive and negative wavelet-transformed pressure regions along the jet distance, spreading towards the downstream with advection and propagation. It was concluded that this structure and its dynamic motion are the reason why a high subsonic jet produces the dominant noise with a particular downstream directivity.

키워드