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Radiation-Induced Oscillatory Instability in Diffusion Flames

복사 열손실로 인한 확산 화염의 맥동 불안정에 관한 연구

  • 손채훈 (한국과학기술연구원 지구환경연구센터) ;
  • 김종수 (한국과학기술연구원 지구환경연구센터)
  • Received : 1999.04.10
  • Published : 1999.09.01

Abstract

Radiation-induced oscillatory instability in diffusion flames is numerically investigated with nonlinear dynamics considered. As the simplest flame model, a diffusion flame established in the stagnant mixing layer is employed with optically thin gas-phase radiation and unity Lewis numbers for all species. Attention is focused on the radiation-induced extinction regime, which occurs at large $Damk\ddot{o}hler$ number. Once the steady flame structure is obtained for a prescribed value of the initial $Damk\ddot{o}hler$ number, transient solution of the flame is calculated after a finite amount of the $Damk\ddot{o}hler$-number perturbation is imposed on the steady flame. Transient evolution of the flame exhibits three types of flame-evolution behaviors, namely decaying oscillatory solution, diverging solution to extinction and stable limit-cycle solution. A dynamic extinction boundary is identified for laminar flamelet library.

Keywords

Acknowledgement

Supported by : KIST