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单次大气散射效应对星载激光测高仪接收脉冲回波的影响 被引量:9
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作者 周辉 李松 +1 位作者 王良训 涂兰芬 《红外与激光工程》 EI CSCD 北大核心 2016年第1期34-40,共7页
大气散射效应是影响星载激光测高仪接收脉冲回波的重要因素。根据星载激光测高仪接收脉冲回波信号与大气响应函数之间的关系式,在忽略大气多次散射效应的条件下,通过分析散射激光束的几何轨迹和散射概率,推导出单次大气散射激光脉冲和... 大气散射效应是影响星载激光测高仪接收脉冲回波的重要因素。根据星载激光测高仪接收脉冲回波信号与大气响应函数之间的关系式,在忽略大气多次散射效应的条件下,通过分析散射激光束的几何轨迹和散射概率,推导出单次大气散射激光脉冲和接收脉冲回波的特征参数的数学解析式。以地球科学激光测高仪系统参数为输入,采用数值仿真分析的方法,模拟了大气散射介质分布、激光指向角和目标倾斜角对接收脉冲回波信号特征参数的影响。结果表明,若散射介质的高度和粒子半径范围分别为0.2~6 km和0~120μm,则其对接收脉冲回波的能量、重心和均方根脉宽的影响最大值分别超过15%、250 cm和800 cm。随着激光指向角或目标倾斜角的增加,接收脉冲回波的能量基本不产生影响,但是其重心和均方根脉宽近似呈线性增加趋势。同时,采用高斯拟合方法可以减小大气散射效应对接收脉冲回波的影响。所得结论对于接收脉冲回波的数据处理与分析以及激光测距精度的评估具有一定的指导意义。 展开更多
关键词 星载激光测高仪 接收脉冲回波 单次大气散射 特征参数 高斯拟合
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Chemical Composition of Summertime PM_(2.5) and Its Relationship to Aerosol Optical Properties in Guangzhou,China 被引量:7
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作者 Tao Jun Cheng Tian-Tao Zhang Ren-Jian 《Atmospheric and Oceanic Science Letters》 2012年第2期88-94,共7页
Urban aerosols have a large effect on the deterioration of air quality and the degradation of atmospheric visibility.Characterization of the chemical composition of PM 2.5 and in situ measurements of the optical prope... Urban aerosols have a large effect on the deterioration of air quality and the degradation of atmospheric visibility.Characterization of the chemical composition of PM 2.5 and in situ measurements of the optical properties of aerosols were conducted in July 2008 at an urban site in Guangzhou,Southern China.The mean PM 2.5 concentration for the entire period was 53.7±23.2 μg m 3.The mean PM 2.5 concentration (82.7±25.4 μg m 3) on hazy days was roughly two times higher than that on clear days (38.8±8.7 μg m 3).The total water-soluble ion species and the total average carbon accounted for 47.9%±4.3% and 35.2%±4.5%,respectively,of the major components of PM 2.5.The increase of secondary and carbonaceous aerosols,in particular ammonium sulfate,played an important role in the formation of haze pollution.The mean absorption and scattering coefficients and the single scattering albedo over the whole period were 53±20 M m 1,226±111 M m 1,and 0.80±0.04,respectively.PM 2.5 had a high linear correlation with the aerosol extinction coefficient,elemental carbon (EC) was correlated with aerosol absorption,and organic carbon (OC) and SO 4 2 were tightly linked to aerosol scattering. 展开更多
关键词 fine aerosol particle chemical composition aerosol optical coefficient
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