Numerical Prediction of Thermoacoustic Instability in Rijke Tube Using Non-linear Model for Heat Source

비선형 열원모델을 이용한 Rijke tube 내열음향 불안정 곡선의 수치예측기법

  • 송우석 (인하대학교 대학원 기계공학과) ;
  • 이승배 (인하대학교 기계공학과)
  • Published : 2008.11.05

Abstract

The thermal system like a combustion chamber is believed to experience a significant instability problem with vibration in case that the thermal energy or the acoustic energy are transformed into a different form through a relevant path. This study deals with a numerically- predicted, Thermoacoustic instability in a Rijke tube by using a non-linear model for a heat source. The heating part where the energy transformation occurs actively is modeled after simulating two-dimensional cylinder case with constant surface temperature, and a nonlinear model that accounts for the transfer function of magnitude- and phase-characteristics is properly implemented so as to be dependent on the pulsation strength in the tube. The heat source model is observed to result in equivalent Thermoacoustic instabilities in the Rijke tube except low flow-rate cases in which the natural convection is dominant.

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