首页> 外文期刊>Applied optics >Analysis of shipboard aerosol optical thickness measurements from multiple sunphotometers aboard the R/V Ronald H. Brown during the Aerosol Characterization Experiment-Asia
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Analysis of shipboard aerosol optical thickness measurements from multiple sunphotometers aboard the R/V Ronald H. Brown during the Aerosol Characterization Experiment-Asia

机译:在R / V Ronald H. Brown的气溶胶表征实验中,通过多个日光计对船上气溶胶光学厚度测量结果进行了分析

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摘要

Marine sunphotometer measurements collected aboard the R/V Ronald H. Brown during the Aerosol Characterization Experiment-Asia (ACE-Asia) are used to evaluate the ability of complementary instrumentation to obtain the best possible estimates of aerosol optical thickness and Angstrom exponent from ships at sea. A wide range of aerosol conditions, including clean maritime conditions and highly polluted coastal environments, were encountered during the ACE-Asia cruise. The results of this study suggest that shipboard hand-held sunphotometers and fast-rotating shadow-band radiometers (FRSRs) yield similar measurements and uncertainties if proper measurement protocols are used and if the instruments are properly calibrated. The automated FRSR has significantly better temporal resolution (2 min) than the hand-held sunphotometers when standard measurement protocols are used, so it more faithfully represents the variability of the local aerosol structure in polluted regions. Conversely, results suggest that the hand-held sunphotometers may perform better in clean, maritime air masses for unknown reasons. Results also show that the statistical distribution of the Angstrom exponent measurements is different when the distributions from hand-held surphotometers are compared with those from the FRSR and that the differences may arise from a combination of factors. (c) 2005 Optical Society of America
机译:在亚洲气溶胶表征实验(ACE-Asia)期间,在R / V Ronald H. Brown船上收集的海洋光度计测量值用于评估补充仪器的能力,以从以下位置获得最佳估算值:船上的气溶胶光学厚度和埃指数海。亚洲ACE航行期间遇到了各种各样的气溶胶条件,包括清洁的海洋条件和污染严重的沿海环境。这项研究的结果表明,如果使用正确的测量协议并且仪器经过正确校准,则船上手持式日光计和快速旋转的阴影带辐射计(FRSR)会产生相似的测量结果和不确定性。当使用标准测量规程时,自动FRSR的时间分辨率(2分钟)明显优于手持式日光计,因此,它更忠实地代表了污染地区局部气溶胶结构的变化。相反,结果表明,由于未知原因,手持式日光计在清洁的海洋气团中的性能可能更好。结果还表明,将手持式分光光度计的分布与FRSR的分布进行比较时,Angstrom指数测量值的统计分布是不同的,并且差异可能是由多种因素引起的。 (c)2005年美国眼镜学会

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