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A surface reflectance scheme for retrieving aerosol optical depth over urban surfaces in MODIS Dark Target retrieval algorithm

机译:MODIS暗目标检索算法中用于检索城市表面气溶胶光学深度的表面反射方案

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The MODerate resolution Imaging Spectroradiometer (MODIS) instruments, aboard the two Earth Observing System (EOS) satellites Terra and Aqua, provide aerosol information with nearly daily global coverage at moderate spatial resolution (10 and 3 km). Almost 15 years of aerosol data records are now available from MODIS that can be used for various climate and air-quality applications. However, the application of MODIS aerosol products for air-quality concerns is limited by a reduction in retrieval accuracy over urban surfaces. This is largely because the urban surface reflectance behaves differently than that assumed for natural surfaces. In this study, we address the inaccuracies produced by the MODIS Dark Target (MDT) algorithm aerosol optical depth (AOD) retrievals over urban areas and suggest improvements by modifying the surface reflectance scheme in the algorithm. By integrating MODIS Land Surface Reflectance and Land Cover Type information into the aerosol surface parameterization scheme for urban areas, much of the issues associated with the standard algorithm have been mitigated for our test region, the continental United States (CONUS). The new surface scheme takes into account the change in underlying surface type and is only applied for MODIS pixels with urban percentage (UP) larger than 20 %. Over the urban areas where the new scheme has been applied (UP >20 %), the number of AOD retrievals falling within expected error (EE %) has increased by 20 %, and the strong positive bias against ground-based sun photometry has been eliminated. However, we note that the new retrieval introduces a small negative bias for AOD values less than 0.1 due to the ultra-sensitivity of the AOD retrieval to the surface parameterization under low atmospheric aerosol loadings. Global application of the new urban surface parameterization appears promising, but further research and analysis are required before global implementation.
机译:两颗地球观测系统(EOS)卫星Terra和Aqua上的中等分辨率成像光谱仪(MODIS)仪器以中等空间分辨率(10 km和3 km)提供几乎每天的全球气溶胶信息。现在,MODIS提供了将近15年的气溶胶数据记录,可用于各种气候和空气质量应用。但是,MODIS气雾剂产品在空气质量方面的应用受到城市范围内回收精度下降的限制。这主要是因为城市表面反射率的行为与假定的自然表面有所不同。在这项研究中,我们解决了MODIS暗目标(MDT)算法在城市地区气溶胶光学深度(AOD)检索中产生的误差,并建议通过修改算法中的表面反射率方案来提出改进。通过将MODIS陆地表面反射率和土地覆盖类型信息集成到城市地区的气溶胶表面参数化方案中,与标准算法相关的许多问题已在我们的测试区域美国大陆(CONUS)中得到了缓解。新的表面方案考虑了基础表面类型的变化,仅适用于城市百分比(UP)大于20%的MODIS像素。在应用了新方案的城市地区(UP> 20%),在预期误差(EE%)以内的AOD检索数量增加了20%,并且对地面太阳光度法的强烈正偏差被淘汰。但是,我们注意到,由于在低大气气溶胶负荷下AOD检索对表面参数化具有超敏感性,因此对于小于0.1的AOD值,新的检索引入了较小的负偏差。新的城市表面参数化的全球应用看来很有希望,但在全球实施之前需要进一步的研究和分析。

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