Numerical Simulation of Ozone using UAM-V on Summer Episode in the Costal Urban Area, Busan

UAM-V를 이용한 부산지역 고농도 오존사례 수치모의

  • Published : 2003.02.01

Abstract

Temporal and horizontal distributions of surface ozone concentrations covering the Busan metropolitan area were simulated by UAM -V (The Variable grid Urban Airshed Model) that was run with meteorological inputs taken from MM5 for ozone episode day (18 July 1999). UAM-V underestimated the daily maximum ozone con-centration about 14 ppb on average at all monitoring sites within Busan area comparing with observed value. but the correlation between observed and simulated values showed quite significant (R = 0.896, p< 0.01 on average). Higher concentrations of ozone occurred near the city center and industrial areas (western side of city) with high levels of anthropogenic source in the morning, and transport of ozone and its precursors by sea breeze developed in the afternoon contributed to elevated ozone levels in downwind rural areas. Particalarly in slightly downwind area of city center, the highest daily maximum ozone concentration ($\geq$120 ppb) was simulated by UAM-V at 1400 LST. Consequently, local environments including emission distributions and land -sea breeze circulation influenced ozone distributions in the Busan metropolitan area.

Keywords

References

  1. 부산대학교 대학원 석사학위논문 UAM을 이용한 부산지역 고농도 오존일의 수치모의 김수현
  2. 부산대학교 대학원 석사학위논문 부산지역에서의 UAM 적용 및 민감도 분석 김영주
  3. 한국환경과학회지 봄 학술발표지 v.10 부산지역의 오존오염 김유근;이화운;오인보
  4. 한국환경과학회지 v.5 부산 연안역의 오존 농도에 미치는 해풍의 영향 김유군;이화운;오인보
  5. 한국대기환경학회지 v.15 연안의 선박오염배출을 포함한 부산지역의 대기오염물질 배출량 산정 이화운;김유근;전병일;홍정혜
  6. 한국대기환경학회지 v.15 서울·수도권 지역 고농도 오존 사례의 지상 및 종관 기상 특성 오현선;김영성
  7. 한국환경과학회지 v.3 해풍이 부산지역의 대기오염농도에 미치는 영향 전병일;김유근;이화운
  8. 부산광역시 대기 환경개선 실천 계획수립-최종보고서 부산광역시
  9. Atomspheric Environment v.31 no.12 The magnitude and extent of elevated ozone con-centrations areoud the coasts of the Brithish Isles Entwistle, J;K. Weston;R. Singles;R. Burgess https://doi.org/10.1016/S1352-2310(97)00022-8
  10. Atmosphepric Environment v.35 Evaluating the per-formance of regional-scale photochemical model-ing system:Part Ⅱ-ozone predictions Hogrefe, C.;S. T. Rao;P. Kasibhatla;W. Hao;G. Sistla;R. mathur;J. McHenry https://doi.org/10.1016/S1352-2310(01)00183-2
  11. Monthly Weather Review v.124 Nonlocal boundary layer vertical diffusion in a medium-range forecast mo-del Hong, S.-Y.;H. -L. Pan https://doi.org/10.1175/1520-0493(1996)124<2322:NBLVDI>2.0.CO;2
  12. NCAR Techical Note, NCAR/TN-3988+STR. A dsecription of the fifht-generation Penn State/NCAR Mesos-cale Model(MM5) Grell, G. A.;J. Dudhia;D. Stauffer
  13. Atmospheric Environmetn v.24 A study of Taipei ozone problem Liu, C. M.;S. C. Liu;S. H. Shen
  14. Atmospheric Environment v.28 Im-portant meterological parameters for ozone episo-des experienced in the Tappei Basin Liu, C. M.;C. Y. Hung;S. L. Shieh;C. C. Wu https://doi.org/10.1016/1352-2310(94)90031-0
  15. Journal Atmospheric Science v.15 no.15 Air pollutant transport in a coas-tal environment. PartⅠ: two-dimensional simula-tions of sea-breeze and mountain effcts Lu, R.;Turco R. P.
  16. User's guide to the variable-grid urban airshed model(UAM_V)SYSAPP-99-95/27r2 Systems Applications International
  17. Journal of Appled Meteorology v.37 Meteorologi-cal processes and ozone excesses in the Northeastpern United States during the 12-16 July 1995 Epi-sode Zhang, J.;S. T. Rao;S. M. Daggupaty https://doi.org/10.1175/1520-0450(1998)037<0776:MPAOEI>2.0.CO;2