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近地面NO_2浓度卫星遥感估算问题 被引量:9
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作者 陈良富 顾坚斌 +2 位作者 王甜甜 陶金花 余超 《环境监控与预警》 2016年第3期1-5,共5页
对卫星遥感监测大气NO_2的差分算法涉及的科学问题进行了综述,包括去除大气散射和地表反射噪声影响、大气拉曼散射引起的Ring效应校正、不同大气成分分离和观测垂直归一化等问题。国际上通过剔除平流层NO_2获得对流层柱浓度产品,文章绕... 对卫星遥感监测大气NO_2的差分算法涉及的科学问题进行了综述,包括去除大气散射和地表反射噪声影响、大气拉曼散射引起的Ring效应校正、不同大气成分分离和观测垂直归一化等问题。国际上通过剔除平流层NO_2获得对流层柱浓度产品,文章绕开平流层NO_2获取问题,提出了结合大气化学模式模拟的垂直廓线直接估算近地面NO_2浓度技术方法,以更好地满足环境空气质量的观测需求,阐述了几个影响NO_2反演精度的相关问题。 展开更多
关键词 二氧化氮 柱浓度 拉曼散射 大气质量因子 差分吸收光谱算法
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基于振动拉曼散射的差分水Ring效应系数卷积计算模型
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作者 韩冬 陈良富 +4 位作者 李莘莘 陶金花 苏林 邹铭敏 范萌 《物理学报》 SCIE EI CAS CSCD 北大核心 2013年第10期504-509,共6页
利用被动差分吸收光谱算法反演水体上方尤其是海洋上方的大气痕量气体浓度时,水体的振动拉曼散射导致对太阳光谱中夫琅禾费线的填充.若不考虑这种类似大气Ring效应的水Ring效应,会直接影响反演精度.参考OMI传感器对大气Ring效应校正的... 利用被动差分吸收光谱算法反演水体上方尤其是海洋上方的大气痕量气体浓度时,水体的振动拉曼散射导致对太阳光谱中夫琅禾费线的填充.若不考虑这种类似大气Ring效应的水Ring效应,会直接影响反演精度.参考OMI传感器对大气Ring效应校正的卷积算法,针对痕量气体OClO的反演,利用经过大气消光计算后的太阳360—400nm入射光谱和对应波段的水体后向振动拉曼散射系数,通过卷积差分计算,得到了差分水Ring效应系数.与Vasilkov模型计算得到的结果比较,二者的相关系数R达到0.9665. 展开更多
关键词 水Ring效应 振动拉曼散射 卷积 被动差分吸收光谱算法
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Comparison of SO_2 column retrievals from BRD and DOAS algorithms 被引量:1
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作者 YAN HuanHuan LI XiaoJing +5 位作者 WANG WeiHe ZHANG XingYing CHEN LiangFu HAN Dong YU Chao GAO Ling 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第9期1694-1706,共13页
Atmospheric SO_2 has a significant impact on the urban environment and global climate. Band Residual Difference Algorithm(BRD) and Differential Optical Absorption Spectroscopy(DOAS) were used respectively by NASA and ... Atmospheric SO_2 has a significant impact on the urban environment and global climate. Band Residual Difference Algorithm(BRD) and Differential Optical Absorption Spectroscopy(DOAS) were used respectively by NASA and ESA science team to derive SO_2 columns from satellite observations, but there are few studies on the comparison and validation of BRD and DOAS SO_2 retrievals under the same observation conditions. In this study, the radiative transfer model SCIATRAN was firstly used to validate the accuracies of BRD and DOAS SO_2 retrievals, and analyse the uncertainty of SO_2 retrieval caused by band selection,O_3 absorption, aerosol, surface reflectance, solar and viewing zenith angle. Finally, BRD and DOAS algorithms were applied to the same radiances from satellite observations, and comparisons of BRD and DOAS SO_2 retrievals were conducted over volcanic eruption and North China. Results show that, for the case with low SO_2 columns, BRD SO_2 retrievals have higher retrieval accuracy than DOAS, but typical seasonal variation with high SO_2 column in winter and low in summer can be more clearly discernible in DOAS SO_2 retrievals than BRD from satellite observations. For the case with high SO_2 columns, the differences between BRD(310.8–314.4 nm) and DOAS(315–327 nm) retrievals are large, and the value and accuracy of BRD(310.8–314.4 nm) SO_2 retrievals are lower than those of DOAS(315–327 nm) retrievals. Compared with the SO_2 inputs in forward model, both BRD(310.8–314.4 nm) and DOAS(315–327 nm) SO_2 retrievals are underestimated for the case with high SO_2 columns. The selection of wavelength range can significantly affect the accuracy of SO_2 retrieval. The error of BRD SO_2 retrieval from 310.8–314.4 nm is lower than other bands in the ultraviolet spectral region(306–327 nm). The increase of wavelength in the ultraviolet spectral region306–330 nm can reduce the underestimation of DOAS SO_2 retrievals in the case of high SO_2 column, but slight overestimation of SO_2 retrieval is found from the 315–327 nm range in the case of low SO_2 column. The values of BRD and DOAS SO_2 retrieval decrease with atmospheric O_3 column and aerosol optical depth increasing, but increase with surface reflectance increasing. Large solar zenith angle and viewing zenith angle can introduce more errors to the BRD and DOAS SO_2 retrievals. This study is important for the improvement of retrieval algorithm and the application of SO_2 products from satellite observations. 展开更多
关键词 SO2 DOAS BRD Comparison
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