首页> 外文会议>Bioinformatics and Biomedical Engineering , 2009. ICBBE 2009 >Accuracy Assessment of Aerosol Optical Depth Retrieved from the Solar Radiance Measurements in North China
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Accuracy Assessment of Aerosol Optical Depth Retrieved from the Solar Radiance Measurements in North China

机译:华北地区太阳辐射测量反演气溶胶光学深度的精度评估

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By use of automatic sun-tracking photometer CE-318 observations in 2006 measured at the Xilinhot Observatory in Inner Mongolia, a study is performed of variation in atmospheric Aerosol Optical Depth (AOD) retrieved from the solar radiance, concerning the effective factors such as calibration coefficient and cloud. The variation in calibration coefficient decreased more than 18% from January 6, 2006 to January 7, 2007 using Langley calibration method, so the exponential interpolation is adopted to get the value for each month which leads to better retrieval accuracy especially during clear weather. Combining with visibility meter observations, a power-law relation between atmospheric visibility and AOD is figured out for local sandy weather. Based on it, AOD calculated from the atmospheric visibility is studied. Results show that 1) AOD daily variation for clear weather in Xilinhot is unimodal by and large, with a peak in the middle of the day, 2) maximum values of AOD throughout the year appear in spring, with the secondary peak in autumn, 3)a large number of valid data are missing in summer because of the effect by cloud radiance, 4) based on the function relationship suggested, AOD calculated from the atmospheric visibility of dusty weather is more consistent with the real facts while photometer observations are influenced by cloud, the result leading to better precision of dust storms monitoring and pre-warning.
机译:利用内蒙古锡林浩特天文台在2006年使用太阳自动跟踪光度计CE-318进行的观测,对从太阳辐射中获取的大气气溶胶光学深度(AOD)的变化进行了研究,涉及诸如校准等有效因素。系数和云。从2006年1月6日到2007年1月7日,使用Langley校准方法将校准系数的变化降低了18%以上,因此采用指数插值法获得每个月的值,尤其是在晴天时,可以获得更好的检索精度。结合能见度仪的观测结果,可以得出针对当地沙尘天气的大气能见度与AOD之间的幂律关系。在此基础上,研究了由大气能见度计算出的AOD。结果表明:1)锡林浩特市晴朗天气的AOD每日变化总体上是单峰的,在一天的中间出现峰值; 2)全年AOD的最大值出现在春季,第二个高峰出现在秋季,3 )由于云辐射的影响,夏季缺少大量有效数据; 4)根据建议的函数关系,从多尘天气的大气能见度计算出的AOD与真实事实更加吻合,而光度计观测值受到以下因素的影响云,结果导致沙尘暴监测和预警的精度更高。

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