Nose Shape Optimization of the High-speed Train to Reduce the Micro-pressure Wave

미기압파 저감을 위한 고속전철 전두부형상의 최적화설계

  • 권혁빈 (서울대학교 항공우주공학과) ;
  • 이관중 (서울대학교 정밀기계설계공동연구) ;
  • 이동호 (서울대학교 기계항공공학부)
  • Published : 2000.11.01

Abstract

The tunnel booming noise generated by a train moving into a tunnel has been one of the most serious constraints in the development of the high-speed trains. It is well known that the nose shape of the train has the significant influence on the intensity of the booming noise. In this study, the nose shape has been optimized by using the response surface methodology and the axi-symmetric compressible Euler equations. The parametric studies are also performed with respect to the slenderness ratio, the blockage ratio and the train speed to investigate their sensitivities to the optimization results. The results show that it is possible to define more general design space by introducing the Hicks-Henne shape functions, resulting in the more effective nose shape than that of Maeda. The mechanism and the aspects of the train-tunnel interaction were also investigated from the results of the parametric study.

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