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How present aerosol pollution from North America impacts North Atlantic climate

机译:当前来自北美的气溶胶污染如何影响北大西洋气候

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This paper describes the potential effects of present-day aerosol pollution from North America (USA, Canada) on the climate of the North Atlantic region. The study has been performed by applying the comprehensive atmospheric general circulation model ECHAM5-HAM, which is coupled to a mixed-layer ocean with an embedded thermodynamic sea ice module. The model includes a microphysical aerosol model (HAM), which allows for the assessment of aerosol impacts on climate. Sulphate, black and organic carbon, sea salt and mineral dust are considered as aerosol species. Two equilibrium simulations with two different aerosol pollutant scenarios are compared for each season. We investigate the effect on radiation, temperature, hydrological quantities and dynamics, when human-induced aerosol emissions from North America were omitted. The decrease of both direct and indirect aerosol effects induces a positive change in top of the atmosphere (TOA) radiative fluxes resulting in an overall warming in the whole region. Our results demonstrate the vulnerability especially of the Arctic to the reduction in aerosol load. For fall we find an increase in precipitation over the North Atlantic, associated with a tendency to a larger number of cyclones with high-pressure gradients and a higher frequency in storm days.
机译:本文介绍了当今北美(美国,加拿大)的气溶胶污染对北大西洋地区气候的潜在影响。该研究是通过应用综合大气总循环模型ECHAM5-HAM进行的,该模型与带有嵌入式热力学海冰模块的混合层海洋耦合。该模型包括一个微物理气溶胶模型(HAM),可用于评估气溶胶对气候的影响。硫酸盐,黑色和有机碳,海盐和矿物粉尘被认为是气溶胶物种。每个季节比较两种具有两种不同气溶胶污染物情景的平衡模拟。当忽略了北美引起的人为气溶胶排放时,我们研究了对辐射,温度,水文数量和动力学的影响。直接气溶胶效应和间接气溶胶效应的降低都引起大气层顶部(TOA)辐射通量的正变化,从而导致整个区域的总体变暖。我们的结果表明,尤其是北极地区对减少气溶胶负荷的脆弱性。对于秋天,我们发现北大西洋上空的降水增加,这伴随着更多的旋风,它们具有高压梯度并且在暴风雨日出现频率更高。

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  • 来源
    《Tellus 》 |2010年第4期| P.579-589| 共11页
  • 作者单位

    Max-Planck-Institut fuer Meteorologie, Hamburg, Germany;

    rnMax-Planck-Institut fuer Meteorologie, Hamburg, Germany;

    rnMax-Planck-Institut fuer Meteorologie, Hamburg, Germany Department of Earth and Atmospheric Sciences, Cornell University, Ithaca, NY, USA;

    rnMeteorologisches Institut, Universitaet Hamburg, Germany;

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