Stabilization Characteristics of the Diffusion Flame Formed in the Wake of Bluff Body with Fuel Injection

연료분출을 수반하는 보염기 후류에 형성되는 확산화염의 보염특성

  • Published : 2001.09.01

Abstract

To study the stabilization characteristics of diffusion flame formed in the wake of a cylindrical bluff body with fuel injection, the flame stability limits, length and temperature of recirculation zone of flame, turbulence intensity distribution near the recirculation zone of flame were measured and analyzed. The length of recirculation zone is independent on main fuel injection quantity, but it is dependent on fuel injection angles, air stream velocity, and auxiliary fuel injection into recirculation zone. For diffusion flame, in general, the flame stabilization is deteriorated with increase of he length of recirculation zone, but if the turbulence generator is installed, the flame stabilization is improved with increase of the length of recirculation zone. The temperature of recirculation zone is dependent on fuel injection angles, auxiliary fuel injection into recirculation zone, turbulence generators, and it dependent on fuel injection angles, auxiliary fuel injection into recirculation zone, turbulence generators, and it has a maximum value at the condition of each theoretical mixture. In general, the more temperature of recirculation zone is low, the more flame is stable. But when the turbulence generator is installed, the more temperature of recirculation zone is low, the more flame is unstable. The turbulence intensity in the wake of bluff body is increased with increase of diameter or blockage ratio of grid. The more turbulence intensity is increased by installation of turbulence generator, the more flame is unstable. Finally, It is clear that the stabilization characteristics of diffuser flame can be controlled by some parameters such as fuel injection angles, auxiliary fuel injection into recirculation zone, turbulence generators.

보염기 후류에 형성되는 화산회생의 보염특성을 고찰하기 위하여 연료 분출각의 변화, 난류발생격자의 설치, 재순환영역 내에 보조 연료의 공급에 따른 화염의 안정범위, 재순환영역의 길이 및 온도, 재순환영역주변의 난류강도 분포를 측정, 고찰하였다. 재순환영역의 길이는 주 연료 분출량의 변화에 따른 영향을 받지 않지만, 연료 분출각 및 주류유속의 변화, 보조 연료의 공급 난류발생격자의 설치 등에 따라 영향을 받는다. 확산화염의 경우 일반적으고 재순환영역의 길이가 길수록 보염성이 불량하지만, 난류발생격자를 설치한 경우에는 재순환영역의 길이가 길수록 보염성이 양호하다. 재순환영역의 온도는 연료 분출각의 변화, 보조 연료의 공급, 난류발생격사의 설치 등에 따라 영향을 받으며, 이론 혼합기 상태에서 최고값에 도달한다. 일반적으로 재순환영역의 온도가 낮을수록 보염성이 양호하지만. 난류발생격자를 설치한 경우에는 재순환영역의 온도가 낮을수록 보염성이 불량하다. 화염이 형성되는 보염기 후류 영역에 대한 난류강도는 격자의 직경이나 구속비가 큰 난류발생 격자를 설치한 경우에 크게 나타나며, 난류강도가 강 할수록 보염성이 불량하다. 연료 분출각의 변화, 난류발생격자의 설치, 재순환영역 내에 보조 연료의 공급 등의 방법으로 확산화염의 보염특성을 제어할 수 있다.

Keywords

References

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