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Improvement of a Snow Albedo Parameterization in the Snow-Atmosphere-Soil Transfer Model: Evaluation of Impacts of Aerosol on Seasonal Snow Cover

机译:雪地-土壤-土壤传输模型中雪反照率参数化的改进:气溶胶对季节性积雪的影响评估

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摘要

The presence of light-absorbing aerosols (LAA) in snow profoundly influence the surface energy balance and water budget.However,most snow-process schemes in land-surface and climate models currently do not take this into consideration.To better represent the snow process and to evaluate the impacts of LAA on snow,this study presents an improved snow albedo parameterization in the Snow-Atmosphere-Soil Transfer (SAST) model,which includes the impacts of LAA on snow.Specifically,the Snow,Ice and Aerosol Radiation (SNICAR) model is incorporated into the SAST model with an LAA mass stratigraphy scheme.The new coupled model is validated against in-situ measurements at the Swamp Angel Study Plot (SASP),Colorado,USA.Results show that the snow albedo and snow depth are better reproduced than those in the original SAST,particularly during the period of snow ablation.Furthermore,the impacts of LAA on snow are estimated in the coupled model through case comparisons of the snowpack,with or without LAA.The LAA particles directly absorb extra solar radiation,which accelerates the growth rate of the snow grain size.Meanwhile,these larger snow particles favor more radiative absorption.The average total radiative forcing of the LAA at the SASP is 47.5 W m-2.This extra radiative absorption enhances the snowmelt rate.As a result,the peak runoff time and "snow all gone" day have shifted 18 and 19.5 days earlier,respectively,which could further impose substantial impacts on the hydrologic cycle and atmospheric processes.
机译:雪中​​存在光吸收气溶胶(LAA)深刻影响着表面能量平衡和水的收支平衡。然而,目前大多数地表和气候模型中的降雪过程都没有考虑这一点。为了更好地表示降雪过程并评估LAA对雪的影响,本研究提出了一种改进的Snow-Atmosphere-Soil Transfer(SAST)模型中的雪反照率参数化,其中包括LAA对雪的影响。特别是,Snow,Ice和气溶胶辐射( (SNICAR)模型通过LAA质量地层学方案被整合到SAST模型中。新耦合模型在美国科罗拉多州的Swamp Angel研究区(SASP)进行了现场测量验证,结果表明雪反照率和雪深与原始SAST相比,它们具有更好的复制效果,尤其是在消融雪期间。此外,在有或没有雪包的情况下,通过耦合模型的比较,可以估算LAA对雪的影响LAA.LAA粒子直接吸收多余的太阳辐射,从而加快了雪粒尺寸的增长速度。与此同时,较大的雪粒有利于更多的辐射吸收.SASP处LAA的平均总辐射强迫为47.5 W m-2这种额外的辐射吸收提高了融雪的速度。结果,高峰径流时间和“全雪”天分别提前了18天和19.5天,这可能进一步对水文循环和大气过程产生重大影响。

著录项

  • 来源
    《大气科学进展(英文版)》 |2017年第11期|1333-1345|共13页
  • 作者单位

    Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    University of Chinese Academy of Sciences, Beijing 100049, China;

    Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    Center for Monsoon System Research, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-19 03:55:47
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