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An Accuracy Assessment of the CALIOP/CALIPSO Version 2/Version 3 Daytime Aerosol Extinction Product Based on a Detailed Multi-Sensor, Multi-Platform Case Study

机译:基于详细的多传感器,多平台案例研究的CALIOP / CALIPSO第2版/第3版白天气雾消光产品的精度评估

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摘要

The Cloud Aerosol LIdar with Orthogonal Polarization (CALIOP), on board the CALIPSO platform, has measured profiles of total attenuated backscatter coefficient (level 1 products) since June 2006. CALIOP s level 2 products, such as the aerosol backscatter and extinction coefficient profiles, are retrieved using a complex succession of automated algorithms. The goal of this study is to help identify potential shortcomings in the CALIOP version 2 level 2 aerosol extinction product and to illustrate some of the motivation for the changes that have been introduced in the next version of CALIOP data (version 3, released in June 2010). To help illustrate the potential factors contributing to the uncertainty of the CALIOP aerosol extinction retrieval, we focus on a one-day, multi-instrument, multiplatform comparison study during the CALIPSO and Twilight Zone (CATZ) validation campaign on 4 August 2007. On that day, we observe a consistency in the Aerosol Optical Depth (AOD) values recorded by four different instruments (i.e. spaceborne MODerate Imaging Spectroradiometer, MODIS: 0.67 and POLarization and Directionality of Earth s Reflectances, POLDER: 0.58, airborne High Spectral Resolution Lidar, HSRL: 0.52 and ground-based AErosol RObotic NETwork, AERONET: 0.48 to 0.73) while CALIOP AOD is a factor of two lower (0.32 at 532 nm). This case study illustrates the following potential sources of uncertainty in the CALIOP AOD: (i) CALIOP s low signal-to-noise ratio (SNR) leading to the misclassification and/or lack of aerosol layer identification, especially close to the Earth s surface; (ii) the cloud contamination of CALIOP version 2 aerosol backscatter and extinction profiles; (iii) potentially erroneous assumptions of the aerosol extinction-to-backscatter ratio (Sa) used in CALIOP s extinction retrievals; and (iv) calibration coefficient biases in the CALIOP daytime attenuated backscatter coefficient profiles. The use of version 3 CALIOP extinction retrieval for our case study seems to partially fix factor (i) although the aerosol retrieved by CALIOP is still somewhat lower than the profile measured by HSRL; the cloud contamination (ii) appears to be corrected; no particular change is apparent in the observation-based CALIOP Sa value (iii). Our case study also showed very little difference in version 2 and version 3 CALIOP attenuated backscatter coefficient profiles, illustrating a minor change in the calibration scheme (iv).
机译:自2006年6月以来,CALIPSO平台上的正交偏振云气溶胶激光雷达(CALIOP)已测量了总衰减后向散射系数(第1级产品)的分布。CALIOP的第2级产品,如气溶胶后向散射和消光系数分布,使用一系列复杂的自动化算法来检索。这项研究的目的是帮助确定CALIOP第2版第2级气雾消灭产品中的潜在缺陷,并说明在下一版CALIOP数据(第3版,2010年6月发布)中引入的更改动机。 )。为了帮助说明导致CALIOP气溶胶消光的不确定性的潜在因素,我们在2007年8月4日的CALIPSO和暮光区(CATZ)验证活动中着重进行了为期一天,多仪器,多平台的比较研究。当天,我们观察到四种不同仪器记录的气溶胶光学深度(AOD)值具有一致性(即,太空型现代成像光谱仪,MODIS:0.67和地球反射的极化和方向性,POLDER:0.58,机载高光谱分辨率激光雷达,HSRL) :0.52和基于地面的AErosol机器人网络,航空网:0.48至0.73),而CALIOP AOD降低了两倍(532 nm为0.32)。此案例研究说明了CALIOP AOD的以下潜在不确定性来源:(i)CALIOP的信噪比(SNR)低,导致分类错误和/或缺乏气溶胶层识别,尤其是靠近地球表面; (ii)CALIOP 2版气溶胶反向散射和消光剖面的云雾污染; (iii)在CALIOP的灭绝检索中使用的气溶胶消退与背向散射比(Sa)的潜在错误假设; (iv)CALIOP日间衰减后向散射系数曲线中的校准系数偏差。在我们的案例研究中,使用第3版CALIOP消光技术似乎可以部分解决因素(i),尽管CALIOP采集的气溶胶仍略低于HSRL测得的气溶胶; (ii)云污染似乎已得到纠正;在基于观测的CALIOP Sa值(iii)中没有特别的变化。我们的案例研究还显示,第2版和第3版CALIOP衰减后向散射系数曲线几乎没有差异,说明校准方案(iv)略有变化。

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