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基于大气中性点的地-气分离方法空基验证探究(英文) 被引量:3
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作者 杨尚强 关桂霞 +6 位作者 赵海盟 赵红颖 杨彬 张文凯 谭翔 吴太夏 晏磊 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2013年第9期2525-2531,共7页
偏振遥感是遥感领域的一个新兴对地观测手段,地物反射的偏振效应是偏振遥感进行观测的基础。然而,地物反射具有偏振效应,大气粒子的反射与散射也具有偏振效应,并且大气的偏振效应往往大大强于地物偏振效应。当用偏振遥感器对地表目标进... 偏振遥感是遥感领域的一个新兴对地观测手段,地物反射的偏振效应是偏振遥感进行观测的基础。然而,地物反射具有偏振效应,大气粒子的反射与散射也具有偏振效应,并且大气的偏振效应往往大大强于地物偏振效应。当用偏振遥感器对地表目标进行观测时,大气的强偏振效应会干扰甚至覆盖地物的偏振信息。因此,如何最大限度地消除大气的偏振效应对地物偏振效应的影响是偏振遥感的一个关键性问题。大气中性点是大气中偏振度趋近为零的区域。利用大气中性点进行地-气分离理论的核心思想是将探测器放置于中性点区域进行对地观测,以减弱大气偏振对地物偏振的影响。基于国内首次大气中性点偏振遥感航空飞行实验,通过处理和分析实验所得影像数据,分别得到了中性点位置和非中性点位置影像偏振度分布,发现中性点位置偏振度集中分布区域要明显小于非中性点位置,验证了利用大气中性点进行地-气分离理论的合理性和可行性,提出了利用中性点进行偏振遥感实验所需要的条件,并初步分析出,波长较长的波段更适合于偏振遥感观测。 展开更多
关键词 偏振遥感 中性点 地-气分离
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Unrealistic treatment of detrained water substance in FGOALS-s2 and its influence on the model's climate sensitivity 被引量:2
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作者 HE Bian 《Atmospheric and Oceanic Science Letters》 CSCD 2016年第1期45-51,共7页
Based on a series of aqua-planet and air–sea coupled experiments,the influence of unrealistic treatment of water substance in the Flexible Global Ocean–Atmosphere–Land System Model,spectral version 2(FGOALS-s2),o... Based on a series of aqua-planet and air–sea coupled experiments,the influence of unrealistic treatment of water substance in the Flexible Global Ocean–Atmosphere–Land System Model,spectral version 2(FGOALS-s2),on the model's climate sensitivity is investigated in this paper.Because the model does not adopt an explicit microphysics scheme,the detrained water substance from the convection scheme is converted back to the humidity.This procedure could lead to an additional increase of water vapor in the atmosphere,which could strengthen the model's climate sensitivity.Further sensitivity experiments confirm this deduction.After removing the water vapor converted from the detrained water substance,the water vapor reduced significantly in the upper troposphere and the high clouds also reduced.Quantitative calculations show that the water vapor reduced almost 10% of the total water vapor,and 50% at 150 h Pa,when the detrained water substance was removed,contributing to the 30% atmospheric surface temperature increase.This study calls for an explicit microphysics scheme to be introduced into the model in order to handle the detrained water vapor and thus improve the model's simulation skill. 展开更多
关键词 FGOA Ls-s2 climate sensitivity cloud radiation global warming
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