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Mixing Effect by Tone-Excitation In Round Jet Diffusion Flame

원형분류확산화염에서의 음파가진에 의한 혼합효과

  • 김태권 (계명대학교 자동차공학부) ;
  • 박정 (한국과학기술원 기계기술연구소) ;
  • 신현동 (한국과학기술원 기계공학과)
  • Received : 1999.01.25
  • Published : 1999.06.01

Abstract

An experimental investigation has been conducted with the objective of studying the mixing mechanism near the nozzle exit in a tone-excited jet diffusion flame. The fuel jet was pulsed by means of a loudspeaker-driven cavity. The excitation frequencies were chosen for the two cases of the non-resonant and resonant frequency identified as a fuel tube resonance due to acoustic excitation. The effect of tone-excitations on mixing pattern near the nozzle exit and flame was visualized using various techniques, including schlieren photograph and laser light scattering photograph from $TiO_2$ seed particles. In order to clarify the details of the flame feature observed by visualization methods, hotwire measurements have been made. Excitation at the resonant frequency makes strong mixing near the nozzle. In this case, the fuel jet flow in the vicinity of nozzle exit breaks up into disturbed fuel parcels. This phenomena affects greatly the combustion characteristics of the tone excited jet and presumably occurs by flow separation from the wall inside the fuel nozzle. As a result, in the resonant frequency the flame length reduces greatly.

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