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首页> 外文期刊>Atmospheric environment >Lake-atmosphere exchange impacts ozone simulation around a large shallow lake with large cities
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Lake-atmosphere exchange impacts ozone simulation around a large shallow lake with large cities

机译:Lake-Lake-Matrose Exchange会影响臭氧模拟,围绕一个大型城市的大型浅湖

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摘要

Weather Research and Forecast model coupled with Chemistry (WRF-Chem) coupled with CLM4.5 lake model is used to understand the impacts of lake-atmosphere exchange on ozone concentration in the Lake Taihu region during a high temperature and high ozone concentration event. About 8 degrees C bias in lake surface temperature simulated by different lake schemes significantly change the structure and evolution of the lake-land breeze system. As a result, the vertical and horizontal advection directly impacts distribution of ozone around and over the lake in early morning, the difference in ozone concentration is 20-60 mu g m(-3). Location of the lake breeze front and development of the thermal inner boundary layer around midday are also highly sensitive to the lakeatmosphere exchange. In addition, difference in the local circulation patterns leads to distinct spatial distributions of NOx, an ozone precursor, in regions downwind of their emission sources, especially along the Yangtze River. In response, ozone concentration in this region is drastically changed (about 80 mu g m(-3)) due to thed combined actions of transport and chemical reactions. Overall, this study highlights that in regions with spatially extensive shallow lakes with megacities, it is important to accurately represent the lake-atmosphere exchange for ozone pollution simulations, especially under high-temperature and light-wind conditions, in which ozone high concentration events occur frequently and effects of the local lake breeze are expected to dominate.
机译:与CLM4.5湖模型相结合的天气研究和预测模型与CLM4.5湖型号相结合,了解湖 - 大气交换在高温和高臭氧浓度事件中湖泊湖中臭氧浓度的影响。不同湖泊方案模拟的湖面温度大约8摄氏度偏差显着改变了湖陆微风系统的结构和演化。结果,垂直和横向平流直接影响臭氧周围和湖泊周围的分布在清晨,臭氧浓度的差异为20-60μgm(-3)。湖风前面和午间热内边界层的开发的位置对LakeatMophysext交换也非常敏感。此外,局部循环模式的差异导致NOx,臭氧前体的不同空间分布,其排放源在其排放源的区域中,特别是沿长江。作为响应,由于传输和化学反应的组合动作,该区域中的臭氧浓度急剧地改变(约80μgm(-3))。总的来说,这项研究突出显示,在具有巨大的空间浅湖泊的地区,重要的是准确地代表臭氧污染模拟的湖泊 - 大气交换,尤其是在高温和光风条件下,其中发生臭氧高浓度事件通常和当地湖风的效果预计会占主导地位。

著录项

  • 来源
    《Atmospheric environment》 |2021年第2期|118086.1-118086.13|共13页
  • 作者

    Wang Fan; Li Qi; Wang Yongwei;

  • 作者单位

    Nanjing Univ Informat Sci & Technol Yale NUIST Ctr Atmospher Environm Nanjing 210044 Peoples R China|Nanjing Univ Informat Sci & Technol Sch Atmospher Phys Nanjing 210044 Peoples R China;

    Cornell Univ Sch Civil & Environm Engn Ithaca NY 14853 USA;

    Nanjing Univ Informat Sci & Technol Yale NUIST Ctr Atmospher Environm Nanjing 210044 Peoples R China|Nanjing Univ Informat Sci & Technol Sch Atmospher Phys Nanjing 210044 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lake-atmosphere exchange; Ozone simulation; Lake Taihu; WRF-Chem; Lake scheme;

    机译:湖气氛交换;臭氧仿真;太湖湖;WRF-Chem;湖计划;

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