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Climatologic comparison of HadISST1 and TMI sea surface temperature datasets 被引量:3
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作者 WANG Yu LIU Peng LI TianYi FU YunFei 《Science China Earth Sciences》 SCIE EI CAS 2011年第8期1238-1247,共10页
Two monthly datasets of sea surface temperature (SST),TMI SST retrieved from satellite observations by Remote Sensing System and HadISST1 (Hadley Centre Sea-ice and Sea-surface Temperature Data Set Version 1) derived ... Two monthly datasets of sea surface temperature (SST),TMI SST retrieved from satellite observations by Remote Sensing System and HadISST1 (Hadley Centre Sea-ice and Sea-surface Temperature Data Set Version 1) derived from in situ measurements by Hadley Centre,were compared on climatologic multiple time scales over tropical and subtropical areas from 1998 to 2006.Results indicate that there is a good consistency in the horizontal global distribution,with 1.0° resolution on multi-year and multi-season mean scales between the two datasets,and also in the time series of global mean SST anomalies.However,there are still some significant differences between the datasets.Generally,TMI SST is relatively higher than HadISST1.In addition,the differences between the two datasets show not only remarkable regionality,but also distinct seasonal variations.Moreover,the maximum departure occurs in summer,while theminimum takes place in autumn.For all seasons,over 30% of the regions in the Tropical and Subtropical areas have a difference of more than 0.3°C.EOF analysis of the SST anomaly field also shows that there are differences between the two datasets,where HadISST1 has more significant statistical characteristics than TMI SST.On the other hand,results show that the difference between the two datasets is related to the vertical structure of ocean temperatures,as well as other simultaneously retrieved parameters in TMI products,such as wind speed,water vapor,liquid cloud water and rain rates.In addition,large biases between HadISST1 and TMI SST are found in coastal regions,where TMI SST cannot be accurately retrieved because of polluted microwave signals. 展开更多
关键词 海面温度 数据集 TMI 气候学 亚热带地区 海洋表面温度 季节性变化 检索参数
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TMI反演海温与Hadley中心海温资料的气候尺度比较分析 被引量:10
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作者 王雨 刘鹏 +1 位作者 李天奕 傅云飞 《中国科学:地球科学》 CSCD 北大核心 2011年第8期1200-1210,共11页
本文分析研究了1998~2006年热带及副热带TMI反演获得的海温资料(TMISST)和Hadley中心海温资料(HadISST1)在气候尺度上的异同.研究结果表明,TMISST和HadISST1均能反映热带及副热带海温的气候态分布特征,也都能指示其海温的异常变化.... 本文分析研究了1998~2006年热带及副热带TMI反演获得的海温资料(TMISST)和Hadley中心海温资料(HadISST1)在气候尺度上的异同.研究结果表明,TMISST和HadISST1均能反映热带及副热带海温的气候态分布特征,也都能指示其海温的异常变化.但是,两种海温资料之间仍然存在一定的差异,主要表现为TMISST较HadISST1偏高.此外,两者差异不仅存在明显的地域性特征,而且存在明显的季节变化:夏季两种海温资料的差异最大,秋季最小,但各季均有30%以上格点的差值在0.3℃以上.对两种海温资料距平场的EOF分析亦明确显示HadISST1和TMISST存在差异,HadISST1所反映的统计特征较TMISST更加细致.由于TMISST的反演基于一套综合性算法,其反演结果受到其他诸如风速、水汽、云水或降水等大气参数的干扰,进而造成HadISST1和TMISST的差异,且这些因素还造成了两者偏差水平分布的地域性特征.同时,也正是这些因素和海温垂直结构的季节变化,导致了两者偏差存在明显的季节变化.此外,在大陆近海区域,由于TMI信号受到污染,海温反演存在一定的缺陷,导致两者的差别较大,因此,在近海区域TMISST要慎用. 展开更多
关键词 海温 hadisst1 TMI EOF分析
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