대향류 비예혼합화염과 상호작용하는 단일 와동의 생성특성에 관한 연구

An Investigation on the Formation Characteristics of a Single Vortex Interacting with Counterflow Nonpremixed Flame
  • CHANGEON LEE

초록

A two-dimensional direct numerical simulation is performed to investigate the formation characteristics of a single vortex interacting with CH4/N2-Air counterflow nonpremixed flame. The numerical method was based on a predictor-corrector scheme for a low Mach number flow. The detailed transport properties and a 16-step augmented reduced mechanism are adopted in this calculation. The budgets of the vorticity transport equation are examined to reveal the mechanisms leading to the formation, evolution and dissipation of a single vortex interacting with counterflow nonpremixed flame. It is found that the stretching term, which depends on the azimuthal component of vorticity, and radial velocity, mainly generates vorticity in non-reacting and reacting flows. The viscous and baroclinic torque term destroy the vorticity in non-reacting flow. In addition, the baroclinic torque term due to density and pressure gradient generates vorticity, while viscous and the volumetric expansion terms due to density gradient destroy vorticity in reacting flow.

제목
대향류 비예혼합화염과 상호작용하는 단일 와동의 생성특성에 관한 연구
제목 (타언어)
An Investigation on the Formation Characteristics of a Single Vortex Interacting with Counterflow Nonpremixed Flame
저자
CHANGEON LEE
학회명
제25회 KOSCO SYMPOSIUM