Development of transient-state simulation model for slag flow on the wall of an entrained coal gasifier

분류층 가스화기 벽면의 슬래그거동에 대한 비정상해석 모델 개발

  • 김무경 (성균관대학교 기계공학과) ;
  • 예인수 (성균관대학교 기계공학과) ;
  • 류창국 (성균관대학교 기계공학과)
  • Published : 2015.12.10

Abstract

Understanding the slag flow behavior is important in an entrained coal gasifier for its influence of ash discharge and wall heat transfer rate. This study presents a new model to predict the transient behavior of the liquid and solid slag layers. Unlike the previous steady-state model, the solid slag layer was included in solving the governing equations in order to identify the temporal and spatial transformation between the solid-liquid slag, rather than treating the solid region as a boundary condition of the liquid layer. The performance of the new model was evaluated for changes in the slag deposition rate (${\pm}10%$) and gas temperature (${\pm}50K$) in a simple cylindrical gasifier. The results show that the characteristic times to reach a new steady-state ranged between 80 s to 180s for the changes in the two parameters. Because the characteristic times of the gasifier temperature and slag deposition rate by changes in the coal type and/or operating conditions would be almost instantaneous, the time-scale for the slag thickness at the bottom of the gasifier to stabilize was much larger.

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