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Effects of aerosols on the atmospheric boundary layer temperature inversion over the Sichuan Basin, China

机译:气溶胶对四川盆地大气边界层温度反演的影响

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摘要

The relationship between the aerosol and the boundary layer temperature inversion is analyzed based on the radiosonde, visibility, and PM2.5 mass concentration data from 2014 to 2016 in the wintertime over the Sichuan Basin. The radiosonde data are divided into four equal parts according to the previous 12-h average visibility and PM2.5 mass concentration. The mechanisms of the aerosol radiative effect on the boundary layer temperature inversion are further investigated by using the radiometer, the Mie scattering lidar, and the microwave radiometer in Chengdu. 1D-SBDART simulation is performed to better clarify the mechanisms. The occurrence probability of multi-layer temperature inversions is about 46.86% in winter over the Sichuan Basin. As the PM2.5 mass concentration increases (visibility decreases), the surface-based inversion frequency increases more consistently in the morning, while the elevated inversion increases more consistently in the evening. Aerosols can enhance the boundary layer temperature inversion at both daytime and nighttime due to the radiative effect, while clouds mitigate the enhancement by aerosol effects. The simulation results show that: from clean to heavy pollution conditions, in clear-sky the surface shortwave radiation reduces by 135.04 w.m(-2) and the heating rate increases by 0.75 k.d(-1); in cloudy sky the surface shortwave radiation reduces by 46.15 w.m(-2) and the heating rate increases by 0.35 k.d(-1). The case in Chengdu from 08:00 BJT on December 6 to 08:00 on December 10 in 2016 well illustrates the mechanisms.
机译:根据四川盆地的冬季冬季,基于2014年至2016年2014年至2016年的无线电探矿,可视性和PM2.5质量浓度数据分析了气溶胶与边界层温度反转。可无线电数据根据先前的12-H平均可见性和PM2.5质量浓度分为四个相等的部分。通过使用Chengdu的微波辐射器和微波辐射计进一步研究了气溶胶辐射效应对边界层温度反转的机制。执行1D-SBDART模拟以更好地阐明机制。在四川盆地的冬季,多层温度逆转的发生概率约为46.86%。随着PM2.5质量浓度的增加(可见性降低),表面的反转频率在早晨持续增加,而在晚上升高的反演升高则增加。由于辐射效果,气溶胶可以增强白天和夜间的边界层温度反转,而云减轻了气溶胶效应的增强。仿真结果表明:从清洁到重的污染条件,在清晰的天空中,表面短波辐射减少135.04 W.mm(-2),加热速率增加0.75kd(-1);在多云的天空中,表面短波辐射通过46.15Wm(-2)减少,加热速率增加0.35k.d(-1)。该案件于12月6日从08:00 BJT于2016年12月10日到08:00的情况说明了这一机制。

著录项

  • 来源
    《Atmospheric environment》 |2021年第10期|118647.1-118647.15|共15页
  • 作者单位

    Chengdu Univ Informat Technol Plateau Atmospheres & Environm Key Lab Sichuan Pr Chengdu 610225 Peoples R China|Chengdu Univ Informat Technol Sch Atmospher Sci Chengdu 610225 Peoples R China|Chengdu Acad Environm Sci Chengdu 610072 Peoples R China;

    Chengdu Univ Informat Technol Plateau Atmospheres & Environm Key Lab Sichuan Pr Chengdu 610225 Peoples R China|Chengdu Univ Informat Technol Sch Atmospher Sci Chengdu 610225 Peoples R China;

    Chengdu Univ Informat Technol Plateau Atmospheres & Environm Key Lab Sichuan Pr Chengdu 610225 Peoples R China|Chengdu Univ Informat Technol Sch Atmospher Sci Chengdu 610225 Peoples R China;

    China Meteorol Adm Natl Meteorol Ctr Beijing 100081 Peoples R China;

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

    Temperature inversion; Aerosol radiative effect; Sichuan Basin;

    机译:温度反转;气溶胶辐射效果;四川盆地;

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