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The MERRA-2 Aerosol Reanalysis, 1980 Onward. Part II: Evaluation and Case Studies

机译:Merra-2气溶胶Reanalysis,1980向上。 第二部分:评估和案例研究

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The Modern-Era Retrospective Analysis for Research and Applications, version 2 (MERRA-2), is NASA's latest reanalysis for the satellite era (1980 onward) using the Goddard Earth Observing System, version 5 (GEOS-5), Earth system model. MERRA-2 provides several improvements over its predecessor (MERRA-1), including aerosol assimilation for the entire period. MERRA-2 assimilates bias-corrected aerosol optical depth (AOD) from the Moderate Resolution Imaging Spectroradiometer and the Advanced Very High Resolution Radiometer instruments. Additionally, MERRA-2 assimilates (non bias corrected) AODfrom the Multiangle Imaging SpectroRadiometer over bright surfaces andAODfrom Aerosol Robotic Network sunphotometer stations. This paper, the second of a pair, summarizes the efforts to assess the quality of the MERRA-2 aerosol products. First, MERRA-2 aerosols are evaluated using independent observations. It is shown that the MERRA-2 absorption aerosol optical depth (AAOD) and ultraviolet aerosol index (AI) compare well with Ozone Monitoring Instrument observations. Next, aerosol vertical structure and surface fine particulate matter (PM2.5) are evaluated using available satellite, aircraft, and ground-based observations. While MERRA-2 generally compares well to these observations, the assimilation cannot correct for all deficiencies in the model (e.g., missing emissions). Such deficiencies can explain many of the biases with observations. Finally, a focus is placed on several major aerosol events to illustrate successes and weaknesses of theAODassimilation: the Mount Pinatubo eruption, a Saharan dust transport episode, the California Rim Fire, and an extreme pollution event over China. The article concludes with a summary that points to best practices for using the MERRA-2 aerosol reanalysis in future studies.
机译:现代化的研究和应用的回顾性分析(Merra-2),是NASA使用戈达德地球观测系统,5(Geos-5),地球系统模型的卫星时代(1980上)的最新再分析。 Merra-2通过其前身(Merra-1)提供了几种改进,包括整个时期的气溶胶同化。 Merra-2通过中等分辨率成像光谱仪和先进的非常高分辨率辐射计仪器同化偏置校正的气溶胶光学深度(AOD)。此外,Merra-2同化(非偏置校正)Aodfrom在亮表面和气溶胶机器人网络太阳镜站上的多端成像光谱辐射计。本文是一对的第二个,总结了评估Merra-2气溶胶产品的质量的努力。首先,使用独立观察评估Merra-2气溶胶。结果表明,Merra-2吸收气溶胶光学深度(AAOD)和紫外线气溶胶指数(AI)与臭氧监测仪器观察相比。接下来,使用可用的卫星,飞机和地面观测评估气溶胶垂直结构和表面细颗粒物(PM2.5)。虽然Merra-2通常与这些观察结果相比很好,但同化不能纠正模型中的所有缺陷(例如,缺失排放)。这种缺陷可以解释许多具有观察的偏差。最后,将重点放在几个主要的气溶胶事件上,以说明秋季的成功和缺点:帕图克山丘爆发,撒哈拉粉尘传播,加州轮辋火灾和中国极端污染事件。本文缔结的总结,指出了在未来研究中使用Merra-2气溶胶再分析的最佳实践。

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    《Journal of Climate》 |2017年第17期|共22页
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  • 正文语种 eng
  • 中图分类 气候学;
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