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首页> 外文期刊>Atmospheric chemistry and physics >Determining the infrared radiative effects of Saharan dust: a radiative transfer modelling study based on vertically resolved measurements at Lampedusa
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Determining the infrared radiative effects of Saharan dust: a radiative transfer modelling study based on vertically resolved measurements at Lampedusa

机译:确定撒哈拉粉尘的红外辐射效应:基于灯泡垂直解析测量的辐射转移建模研究

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摘要

Detailed measurements of radiation, atmospheric and aerosol properties were carried out in summer 2013 during the Aerosol Direct Radiative Impact on the regional climate in the MEDiterranean region (ADRIMED) campaign in the framework of the Chemistry-Aerosol Mediterranean Experiment (ChArMEx) experiment. This study focusses on the characterization of infrared (IR) optical properties and direct radiative effects of mineral dust, based on three vertical profiles of atmospheric and aerosol properties and IR broadb-and and narrowband radiation from airborne measurements, made in conjunction with radiosonde and ground-based observations at Lampedusa, in the central Mediterranean. Satellite IR spectra from the Infrared Atmospheric Sounder Interferometer (IASI) are also included in the analysis. The atmospheric and aerosol properties are used as input to a radiative transfer model, and various IR radiation parameters (upward and downward irradiance, nadir and zenith brightness temperature at different altitudes) are calculated and compared with observations. The model calculations are made for different sets of dust particle size distribution (PSD) and refractive index (RI), derived from observations and from the literature. The main results of the analysis are that the IR dust radiative forcing is non-negligible and strongly depends on PSD and RI. When calculations are made using the in situ measured size distribution, it is possible to identify the refractive index that produces the best match with observed IR irradiances and brightness temperatures (BTs). The most appropriate refractive indices correspond to those determined from independent measurements of mineral dust aerosols from the source regions (Tunisia, Algeria, Morocco) of dust transported over Lampedusa, suggesting that differences in the source properties should be taken into account. With the in situ size distribution and the most appropriate refractive index the estimated dust IR radiative forcing efficien
机译:在2013年夏季,在气溶胶直接辐射对地中海地区(ADRIMED)框架中的框架中的框架内的框架内的辐射,大气和气溶胶特性进行了详细的辐射,大气和气溶胶性能。本研究侧重于红外(IR)光学性质的表征,以及矿物粉尘的直接辐射效果,基于大气和气溶胶特性和IR Broadb-and and窄带辐射的空气传播测量,与无线电探测器和地面一起制成在地中海中,在Lampedusa的观察结果。来自红外大气发声器干涉仪(IASI)的卫星IR光谱也包括在分析中。大气和气溶胶属性用作辐射转移模型的输入,并计算各种IR辐射参数(向上和向下的辐照度,Nadir和Zenith和Zenith亮度温度),并与观察结果进行比较。模型计算用于不同的灰尘粒度分布(PSD)和折射率(RI),来自观察和文献。分析的主要结果是IR粉尘辐射强制性是不可忽略的,并且强烈取决于PSD和RI。当使用原位测量尺寸分布进行计算时,可以识别产生与观察到的IR辐射和亮度温度(BTS)产生最佳匹配的折射率。最合适的折射率对应于从灯罩运输的源区(突尼斯,阿尔及利亚,摩洛哥)的矿物粉尘气溶胶的独立测量结果,表明应考虑源特性的差异。用原位尺寸分布和最合适的折射率估计灰尘红外辐射强制效率

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  • 来源
    《Atmospheric chemistry and physics》 |2018年第6期|共25页
  • 作者单位

    ENEA Lab Observat &

    Anal Earth &

    Climate Via Anguillarese 301 I-00123 Rome Italy;

    ENEA Lab Observat &

    Anal Earth &

    Climate Via Anguillarese 301 I-00123 Rome Italy;

    Univ Lille 1 Lab Opt Atmospher Villeneuve Dascq France;

    Univ Paris Est Creteil CNRS UMR 7583 Lab Interuniv Syst Atmospher Creteil France;

    ENEA Lab Observat &

    Anal Earth &

    Climate Via Anguillarese 301 I-00123 Rome Italy;

    ENEA Lab Observat &

    Anal Earth &

    Climate Via Anguillarese 301 I-00123 Rome Italy;

    Univ Paris Est Creteil CNRS UMR 7583 Lab Interuniv Syst Atmospher Creteil France;

    Univ Valencia Dept Fis Terra &

    Termodinam Valencia Spain;

    World Radiat Ctr Phys Meteorol Observ Davos Dorfstr 33 CH-7260 Davos Switzerland;

    World Radiat Ctr Phys Meteorol Observ Davos Dorfstr 33 CH-7260 Davos Switzerland;

    NASA Goddard Space Flight Ctr Solar Syst Explorat Div 8800 Greenbelt Rd Greenbelt MD 20771 USA;

    Meteo France CNRS UMR 3589 CNRM Toulouse France;

    ENEA Lab Observat &

    Anal Earth &

    Climate Via Anguillarese 301 I-00123 Rome Italy;

    ENEA Lab Observat &

    Anal Earth &

    Climate I-92010 Lampedusa Contrada Capo G Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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