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Tropical cirrus cloud contamination in sun photometer data

机译:太阳光度计数据中的热带卷云污染

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摘要

Cirrus clouds are endemic to Southeast Asia and are a source of potential bias in regional passive aerosol remote sensing datasets. Here, performance of the cloud-screening algorithm for the ground-based Aerosol Robotic Network (AERONET) sun photometer data is evaluated for cirrus cloud contamination at Singapore (1.30° N, 103.77° E). Using twelve months of concurrent AERONET Level 1.5 and 2.0 cloud-screened aerosol optical depth (AOD) data, and collocated Level 1.0 Micro-Pulse Lidar Network (MPLNET) measurements, we investigate the baseline AOD bias due to cirrus cloud presence. Observations are considered for a primary sample of all data and a secondary sample where AERONET data are restricted to a zenith viewing angle < 45°. Cirrus clouds are present in zenith-viewing MPL profiles for 34% and 23% of these samples respectively. Based on approximations of cirrus cloud optical properties necessary to estimate cloud optical depth from the single-channel lidar signal, and assuming partial forward scattering of diffuse light by cirrus clouds into the sun photometer's field of view, we estimate a range in AOD bias due to unscreened cloud presence of 0.034 to 0.060 and 0.031 to 0.055±0.01 for the primary and secondary sample respectively. From the analysis of AERONET AOD for the angle-limited subset alone, we also derive a positive AOD bias of 0.034, which is comparable to the lower bounds for the estimated cloud bias reported for our datasets. These findings, which we attribute to the prevalence of cirrus clouds present from regional convection, are higher than previous reports of global AOD bias in the Moderate Resolution Infrared Spectroradiometer (MODIS) satellite-borne measurements due to residual cirrus cloud presence.
机译:卷云是东南亚特有的,并且是区域被动气溶胶遥感数据集中潜在偏差的来源。在这里,针对新加坡(1.30°N,103.77°E)的卷云污染,评估了基于地面的气溶胶机器人网络(AERONET)太阳光度计数据的云筛选算法的性能。使用并发的十二个月同时进行的AERONET 1.5级和2.0级云过滤气溶胶光学深度(AOD)数据,以及并置的1.0级微脉冲激光雷达网络(MPLNET)测量,我们调查了由于卷云的存在而导致的基线AOD偏差。考虑对所有数据的主要样本和将AERONET数据限制为天顶视角<45°的次要样本进行观察。天顶观测MPL曲线中分别有34%和23%的卷云存在。基于估算单通道激光雷达信号的云光学深度所需的卷云光学特性的近似值,并假设卷云向太阳光度计的视野中散射光的部分前向散射,我们估算了由于以下原因导致的AOD偏差范围:主要样本和次要样本的未筛选云分别为0.034至0.060和0.031至0.055±0.01。从仅针对角度限制子集的AERONET AOD分析得出,我们还得出了0.034的正AOD偏差,这与我们的数据集报告的估计云偏差的下限相当。我们将这些发现归因于区域对流带来的卷云的普遍存在,这些结果要高于先前由于残留卷云的存在而在中分辨率红外光谱仪(MODIS)卫星传播测量中全球AOD偏差的报道。

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  • 来源
    《Atmospheric environment》 |2011年第37期|p.6724-6731|共8页
  • 作者单位

    Centre for Remote Imaging, Sensing and Processing, National University of Singapore, Block S17, Level 2,10 lower Kent Ridge Road, 119260 Singapore;

    Naval Research Laboratory, Marine Meteorology Division, 7 Grace Hopper Avenue Stop 2, Monterey, CA 93943-5502, USA;

    Naval Research Laboratory, Marine Meteorology Division, 7 Grace Hopper Avenue Stop 2, Monterey, CA 93943-5502, USA;

    Sigma Space Corporation, Code 614.4, NASA Coddard Space Flight Center, Greenbelt, MD 20771, USA;

    Micro-Pulse Lidar Network, Code 613.1, NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA;

    Centre for Remote Imaging, Sensing and Processing, National University of Singapore, Block S17, Level 2,10 lower Kent Ridge Road, 119260 Singapore;

    Centre for Remote Imaging, Sensing and Processing, National University of Singapore, Block S17, Level 2,10 lower Kent Ridge Road, 119260 Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    AERONET; Aerosol particles; Cirrus clouds; Lidar; MPLNET; Southeast Asia; Sun photometer;

    机译:航空网;气溶胶颗粒;卷云;激光雷达MPLNET;东南亚;太阳光度计;

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