Acoustic Analysis of Axial Fan using BEM based on Kirchhoff Surface

Kirchhoff Surface 변화에 따른 송풍기 소음의 BEM 해석

  • 박용민 (인하대학교 기계공학과 대학원) ;
  • 이승배 (인하대학교 기계공학과, 에어로네트)
  • Published : 2002.05.01

Abstract

A BEM is highly efficient method in the sense of economic computation. However, boundary integration is not easy for the complex and moving surface e.g. in a rotating blade. Thus, Kirchhoff surface is designed in an effort to overcome the difficulty resulting from complex boundary conditions. A Kirchhoff surface is a fictitious surface which envelopes acoustic sources of main concern. Acoustic sources may be distributed on each Kirchhoff surface element depending on its acoustic characteristics. In this study, an axial fan is assumed to have loading noise as a dominant source. Dipole sources can be computed based on the FW-H equation. Acoustic field is then computed by changing Kirchhoff surfaces on which near-field is implemented, to analyze the effect of Kirchhoff surface on it.

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