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Comparisons of cloud detection among four satellite sensors on severe haze days in eastern China 被引量:2
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作者 TAN Sai-Chun ZHANG Xiao +3 位作者 WANG Hong CHEN Bin SHI Guang-Yu SHI Chong 《Atmospheric and Oceanic Science Letters》 CSCD 2018年第1期86-93,共8页
云在天气、气候和地球能量平衡中非常重要。雾霾地区不同卫星云探测精度如何的研究较少。本论文详细比较了中国东部地区2015–2016年冬季2次严重雾霾天气时,"A-Train"星群上四个遥感器的云探测。结果显示,在雾霾区域,MODIS/A... 云在天气、气候和地球能量平衡中非常重要。雾霾地区不同卫星云探测精度如何的研究较少。本论文详细比较了中国东部地区2015–2016年冬季2次严重雾霾天气时,"A-Train"星群上四个遥感器的云探测。结果显示,在雾霾区域,MODIS/Aqua真彩色图和CALIOP/CALIPSO清楚地观测到气溶胶层时,AIRS/Aqua、CALIOP和CPR/CloudSat没有观测到云,而MODIS则观测到云顶高度接近地面的云,表明MODIS将气溶胶误判为云。更多雾霾天气个例结果显示,在雾霾区域,MODIS云量比AIRS云量高13%–49%,平均高36%. 展开更多
关键词 云探测 气溶胶 雾霾 MODIS AIRS CLOUDSAT CALIPSO
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Comparison between MODIS-derived Day and Night Cloud Cover and Surface Observations over the North China Plain
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作者 Xiao ZHANG Saichun TAN Guangyu SHI 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2018年第2期146-157,共12页
Satellite and human visual observation are two of the most important observation approaches for cloud cover. In this study, the total cloud cover (TCC) observed by MODIS onboard the Terra and Aqua satellites was com... Satellite and human visual observation are two of the most important observation approaches for cloud cover. In this study, the total cloud cover (TCC) observed by MODIS onboard the Terra and Aqua satellites was compared with Synop meteorological station observations over the North China Plain and its surrounding regions for 11 years during daytime and 7 years during nighttime. The Synop data were recorded eight times a day at 3-h intervals. Linear interpolation was used to interpolate the Synop data to the MODIS overpass time in order to reduce the temporal deviation between the satellite and Synop observations. Results showed that MODIS-derived TCC had good consistency with the Synop observations; the correlation coefficients ranged from 0.56 in winter to 0.73 in summer for Terra MODIS, and from 0.55 in winter to 0.71 in summer for Aqua MODIS. However, they also had certain differences. On average, the MODIS-derived TCC was 15.16% higher than the Synop data, and this value was higher at nighttime (15.58%-16.64%) than daytime (12.74%-14.14%). The deviation between the MODIS and Synop TCC had large seasonal variation, being largest in winter (29.53%-31.07%) and smallest in summer (4.46%-6.07%). Analysis indicated that cloud with low cloud-top height and small cloud optical thickness was more likely to cause observation bias. Besides, an increase in the satellite view zenith angle, aerosol optical depth, or snow cover could lead to positively biased MODIS results, and this affect differed among different cloud types. 展开更多
关键词 cloud cover MODIS cloud-top height cloud optical thickness aerosol optical depth view zenith angle
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