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Hydroxyl Radical Measurements in the Flame Using LIF

레이저유도 형광법을 이용한 화염내 OH 농도분포 계측

  • 이병준 (한국표준과학연구원 양자연구부 고온광계측실) ;
  • 길용석 (서울대학교 기계공학과) ;
  • 정석호 (한국표준과학연구원 양자연구부 고온광계측실) ;
  • Published : 1996.02.01

Abstract

Laser applied combustion diagnostic techniques-laser induced fluorescence (LIF) and coherent anti-Stokes Ramann spectroscopy (CARS)-are demonstrated. The profiles of hydroxyl radical (OH) and temperature in the counterflow burner are measured and compared with the numerical results. OH radical is excited on the Q$_1$(6) line of the $A^2$$\sum^+$$\leftarrow$$X^2{\prod}$(1, 0) band transition (281.1 nm) and LIF signal is measured at the the bands of (0, 0) and (1, 1) transition (306~326 nm). Absolute OH radical is obtained by using the laser absorption technique. The quenching effects are considered. Temperature is measured using broadband CARS system. Two dimensional OH radical profile is also obtained. The profiles of OH radical and temperature are found to agree well with those of numerical calculation.

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