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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Aerosol optical depth retrieval in the Arctic region using MODIS data over snow
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Aerosol optical depth retrieval in the Arctic region using MODIS data over snow

机译:利用MODIS数据在积雪上进行北极地区气溶胶光学深度的反演。

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摘要

The Arctic is vulnerable to the long-term transport of aerosols because they affect the surface albedo when particles are deposited on snow and ice. However, aerosol observations for this area are sparse and hence there is considerable uncertainty in the knowledge on the properties of the Arctic aerosol. Atmospheric remote sensing using satellite-based instruments offers an opportunity to obtain information on aerosol properties, in particular the aerosol optical depth (AOD) on an extended spatial scale as determined by the instrument's swath width. However, AOD retrieval over a bright surface is a difficult task because it is difficult to separate and explicitly describe the contribution of the surface and that due to back-scattering by aerosols to the radiance observed by a satellite at the top of the atmosphere (TOA), especially at large Solar Zenith Angles (SZA). In this paper, an approach to achieve this is presented based on a synergetic approach using data from both Moderate Resolution Imaging Spectroradiometer (MODIS) instruments flying on the TERRA and AQUA satellites. The approached also uses prior knowledge for aerosol properties retrieval over snow as well as a Snow Bidirectional Reflectance Distribution Function (BRDF) model. The detailed analysis of the model results demonstrates that the Aerosol Properties Retrieval over Snow (APRS) algorithm is suitable for Arctic region Aerosol Optical Depth (AOD) retrieval. The study periods include April 2010 and April 2011, when the Arctic haze mostly occurs. Six AERONET stations at high latitude (Andenes, Barrow, Ittoqqortoormiit, OPAL, Thule, and PEARL) were used for comparison. The correlation coefficient between retrieved AODs and AERONET AODs was 0.8 and the relative error is between 10% and 20%, demonstrating the potential of the APRS method to retrieve AOD over the Arctic, with highly reflective snow/ice surfaces and large solar zenith angles.
机译:北极易受气溶胶长期运输的影响,因为当颗粒沉积在雪和冰上时,它们会影响表面反照率。但是,对该地区的气溶胶观测很少,因此对北极气溶胶特性的认识存在很大的不确定性。使用基于卫星的仪器进行的大气遥感提供了一个机会,以获取有关气溶胶特性的信息,尤其是由仪器的条幅宽度确定的扩展空间尺度上的气溶胶光学深度(AOD)。但是,在明亮的表面上进行AOD检索是一项艰巨的任务,因为很难分离和明确描述表面的贡献,并且由于气溶胶对大气顶部卫星观测到的辐射所造成的辐射强度的背向散射(TOA) ),尤其是在较大的太阳天顶角(SZA)下。在本文中,基于协同方法,提出了一种方法,该方法使用了TERRA和AQUA卫星上飞行的中分辨率成像光谱仪(MODIS)仪器的数据。该方法还使用先验知识来获取雪上的气溶胶特性以及雪双向反射分布函数(BRDF)模型。对模型结果的详细分析表明,“雪上气溶胶特性检索”(APRS)算法适用于北极地区的“气溶胶光学深度”(AOD)检索。研究时期包括2010年4月和2011年4月,这是北极霾最普遍发生的时期。比较了六个高纬度的AERONET站(Andenes,Barrow,Ittoqqortoormiit,OPAL,Thule和PEARL)。检索到的AOD与AERONET AOD之间的相关系数为0.8,相对误差在10%至20%之间,这说明了APRS方法在北极,冰雪表面高反射和太阳天顶角较大的情况下检索AOD的潜力。

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