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배출 모델 표준입력자료 작성을 위한 CAPSS2SMOKE 프로그램 개발

Development of CAPSS2SMOKE Program for Standardized Input Data of SMOKE Model

  • 이용미 (국립환경과학원 대기공학연구과) ;
  • 이대균 (국립환경과학원 대기공학연구과) ;
  • 이미향 (국립환경과학원 대기공학연구과) ;
  • 홍성철 (국립환경과학원 기후변화연구과) ;
  • 유철 (국립환경과학원 대기공학연구과) ;
  • 장기원 (국립환경과학원 대기공학연구과) ;
  • 홍지형 (국립환경과학원 대기공학연구과) ;
  • 이석조 (국립환경과학원 대기공학연구과)
  • Lee, Yong-Mi (Atmospheric Engineering Research Division, National Institute of Environmental Research) ;
  • Lee, Dae-Gyun (Atmospheric Engineering Research Division, National Institute of Environmental Research) ;
  • Lee, Mi-Hyang (Atmospheric Engineering Research Division, National Institute of Environmental Research) ;
  • Hong, Sung-Chul (Climate Change Research Division, National Institute of Environment Research) ;
  • Yoo, Chul (Atmospheric Engineering Research Division, National Institute of Environmental Research) ;
  • Jang, Kee-Won (Atmospheric Engineering Research Division, National Institute of Environmental Research) ;
  • Hong, Ji-Hyung (Atmospheric Engineering Research Division, National Institute of Environmental Research) ;
  • Lee, Suk-Jo (Atmospheric Engineering Research Division, National Institute of Environmental Research)
  • 투고 : 2013.03.26
  • 심사 : 2013.09.13
  • 발행 : 2013.12.31

초록

The Community Multiscale Air Quality (CMAQ) model is capable of providing high quality atmospheric chemistry profiles through the utilization of high-resolution meteorology and emissions data. However, it cannot simulate air quality accurately if input data are not appropriate and reliable. One of the most important inputs required by CMAQ is the air pollutants emissions, which determines air pollutants concentrations during the simulation. For the CMAQ simulation of Korean peninsula, we, in general, use the Korean National Emission Inventory data which are estimated by Clean Air Policy Support System (CAPSS). However, since they are not provided by model-ready emission data, we should convert CAPSS emissions into model-ready data. The SMOKE is the emission model we used in this study to generate CMAQ-ready emissions. Because processing the emissions data is very monotonous and tedious work, we have developed CAPSS2SMOKE program to convert CAPSS emissions into SMOKE-ready data with ease and effective. CAPSS2SMOKE program consists of many codes and routines such as source classification code, $PM_{10}$ to $PM_{2.5}$ ratio code, map projection conversion routine, spatial allocation routine, and so on. To verify the CAPSS2SMOKE program, we have run SMOKE using the CAPSS 2009 emissions and found that the SMOKE results inherits CAPSS emissions quite well.

키워드

참고문헌

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