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Assessing the radiative impact of aerosol smoke usingMODTRAN~(TM)5

机译:使用MODTRAN〜(TM)5评估烟雾烟雾的辐射影响

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Aerosols in the atmosphere affect the Earth's radiation budget in complicated ways, depending on their physical and optical characteristics and how they interact with solar and terrestrial radiation or affect cloud nucleation. While the Arctic atmosphere is generally very clean, spring incursions of haze and dust from Eurasia are known to perturb the surface radiation balance. Recent analyses (based on "Radiative impact of boreal smoke in the Arctic: Observed and modeled", Stone, et al., to be referred to throughout this ms as Stone2008) also reveal that smoke plumes from boreal forest fires can have significant effects during summer. Once aloft, upper-level winds can transport this smoke long distances. In late June and July 2004 fires raged across eastern Alaska and the Yukon and the resulting smoke was advected across the Arctic, reaching as far as Europe. The long-range transport was tracked using a dispersion model combined with various in situ measurements along its path, all showing enhancements in aerosol opacity. The measurements made at Barrow, Alaska, documented just a portion of the transport and the radiative impact of smoke. The comprehensive measuring systems in place near Barrow (NOAA/GMD and DoE/ARM) presented a unique opportunity to characterize the smoke aerosol both physically and optically, and therefore permit quantification of the upwelling radiance (outgoing shortwave radiance - OSR, 0.28 to 4.0 μm) as observed by NASA satellites: Clouds and the Earth's Radiant Energy System (CERES), coupled with data from Moderate Resolution Imaging Spectroradiometer (MODIS).
机译:大气中的气溶胶会以复杂的方式影响地球的辐射预算,具体取决于其物理和光学特性以及它们与太阳和地面辐射的相互作用方式或影响云的成核作用。虽然北极的大气通常非常干净,但已知春季从欧亚大陆入侵的霾和粉尘扰乱了表面辐射的平衡。最近的分析(基于Stone等人在“北极中的北方烟气的辐射影响:观察和建模”,在本篇文章中始终被称为Stone2008)也显示,北方森林大火产生的烟羽可能在2007年产生重大影响。夏天。一旦升空,高空风可以将这种烟雾长距离传播。 2004年6月下旬和7月下旬,阿拉斯加东部和育空地区熊熊大火,由此产生的烟雾被卷入整个北极,直至欧洲。使用分散模型结合沿其路径进行的各种原位测量来跟踪远程传输,所有这些都显示出气溶胶不透明性的增强。在阿拉斯加的巴罗(Barrow)进行的测量记录了烟气的一部分运输和辐射辐射。巴罗附近的综合测量系统(NOAA / GMD和DoE / ARM)提供了独特的机会来物理和光学地表征烟雾气溶胶,因此可以量化上升流辐射(短波辐射-OSR,0.28至4.0μm) ),如NASA卫星所观察到的:云和地球辐射能系统(CERES),以及来自中分辨率成像光谱仪(MODIS)的数据。

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