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Minimum aerosol layer detection sensitivities and their subsequent impacts on aerosol optical thickness retrievals in CALIPSO level 2 data products

机译:最小气溶胶层检测灵敏度及其随后对Calipso 2级数据产品中的气溶胶光学厚度检索的影响

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Due to instrument sensitivities and algorithm detection limits, level 2 (L2) Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) 532nm aerosol extinction profile retrievals are often populated with retrieval fill values (RFVs), which indicate the absence of detectable levels of aerosol within the profile. In this study, using 4 years (2007–2008 and 2010–2011) of CALIOP version 3 L2 aerosol data, the occurrence frequency of daytime CALIOP profiles containing all RFVs (all-RFV profiles) is studied. In the CALIOP data products, the aerosol optical thickness (AOT) of any all-RFV profile is reported as being zero, which may introduce a bias in CALIOP-based AOT climatologies. For this study, we derive revised estimates of AOT for all-RFV profiles using collocated Moderate Resolution Imaging Spectroradiometer (MODIS) Dark Target (DT) and, where available, AErosol RObotic NEtwork (AERONET) data. Globally, all-RFV profiles comprise roughly 71% of all daytime CALIOP L2 aerosol profiles (i.e., including completely attenuated profiles), accounting for nearly half (45%) of all daytime cloud-free L2 aerosol profiles. The mean collocated MODIS DT (AERONET) 550nm AOT is found to be near 0.06 (0.08) for CALIOP all-RFV profiles. We further estimate a global mean aerosol extinction profile, a so-called “noise floor”, for CALIOP all-RFV profiles. The global mean CALIOP AOT is then recomputed by replacing RFV values with the derived noise-floor values for both all-RFV and non-all-RFV profiles. This process yields an improvement in the agreement of CALIOP and MODIS over-ocean AOT.
机译:由于仪器灵敏度和算法检测限制,具有正交偏振(CALIOP)532nm气溶胶消光轮廓检索的级别2(L2)云气溶胶LIDAR通常用检索填充值(RFV)填充,这表明在没有可检测的气溶胶水平的气溶胶个人资料。在本研究中,使用4年(2007-2008和2010-2011)的卡利普版本3 L2气溶胶数据,研究了包含所有RFV(全RFV型材)的白天卡利波配置文件的发生频率。在Caliop数据产品中,任何All-RFV曲线的气溶胶光学厚度(AOT)报告为零,这可能引入卡利普的AOT气候中的偏差。对于本研究,我们使用并置中度分辨率成像光谱仪(DT)和可用的气溶机器机器人网络(AEROONET)数据来源于All-RFV谱的AOT对ALL-RFV简档的修订估计。在全球范围内,All-RFV型材包括所有白天卡利普L2气溶胶型材的大约71%(即,包括完全衰减的型材),占所有白天无云L2气溶胶型材的近一半(45%)。 CALIOP ALL-RFV型材的均值均接近0.06(0.08)的平均均匀的MODIS DT(AERONET)。我们进一步估计了全局平均气溶胶灭绝曲线,即所谓的“噪声底板”,用于卡利普All-RFV型材。然后通过用All-RFV和非全AL-RFV配置文件替换RFV值来重新计算全局平均卡利波AOT。该过程产生了Caliop和Modis过度AOT的协议的改进。

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