A Study on the Predictability of the Air Pollution Dispersion Model Composed of the Turbulent Parameters

난류특성을 이용한 대기오염확산모델의 예측능에 관한 연구

  • Park, Ki-Hark (Dept. of Atmospheric Science, College of Natural Sciences, Seoul National University) ;
  • Yoon, Soon-Chang (Dept. of Atmospheric Science, College of Natural Sciences, Seoul National University)
  • 박기학 (서울대학교 자연과학대학 대기과학과) ;
  • 윤순창 (서울대학교 자연과학대학 대기과학과)
  • Published : 2001.06.30

Abstract

Gaussian dispersion model is the most widely used tool for the ground level air pollution simulation. Though in spite of the convenience there are important problems on the Pasquill- Gifford' stability classification scheme which was used to define the turbulent state of the atmosphere or to describe the dispersion capabilities of the atmosphere which was each covers a broad range of stability conditions, and that they were very site specific, and the vertical dispersion calculation formula on the case of the unstable atmospheric condition. This paper was carried out to revise the Gaussian dispension model for the purposed of increase the modeling performance and propose the revised model, which was composed of the turbulent characteristics in the unstable atmospheric conditions. The proposed models in this study were composed of the profile method, Monin-Obukhove length, the probability density function model and the lateral dispersion function which was composed of the turbulent parameters, $u_*$(friction velocity), $w_*$(convective velocity scale), $T_L$(lagrangian time scale) for the model specific. There were very good performance results compare with the tracer experiment result on the case of the short distance (<1415m) from the source, but increase the simulation error(%) to stand off the source in the all models. In conclusion, the revised Gaussian dispersion model using the turbulent characteristics may be a good contribution for the development of the air pollution simulation model.

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