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沙尘和霾气溶胶的物理特征比较 被引量:5
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作者 张盼想 张鹏 +2 位作者 陈林 王维和 车慧正 《气象科技》 2018年第6期1258-1265,共8页
粒子尺度谱和复折射率指数是描述大气气溶胶的基本物理参数,也是遥感大气气溶胶光学厚度的基本假定量,决定了光学厚度遥感的准确程度。本文分析了中国气溶胶遥感网反演的北京周边的沙尘和霾天气下大气气溶胶的体积谱和复折射指数,结果表... 粒子尺度谱和复折射率指数是描述大气气溶胶的基本物理参数,也是遥感大气气溶胶光学厚度的基本假定量,决定了光学厚度遥感的准确程度。本文分析了中国气溶胶遥感网反演的北京周边的沙尘和霾天气下大气气溶胶的体积谱和复折射指数,结果表明:沙尘和霾天气下气溶胶的体积谱均呈现双峰对数正态分布,霾气溶胶粒子体积谱在细模态(0.1~1μm)和粗模态(1~10μm)的占比大体相当,沙尘气溶胶粒子体积谱中粗模态占比远远高于细模态,以粗粒子为主;将实际测量的复折射率同HITRAN 2008数据库中各种类型的气溶胶复折射率光谱数据相比,类沙尘粒子的复折射指数同沙尘气溶胶最为接近,水溶性粒子同霾气溶胶最为接近,在大气气溶胶遥感中如果缺少复折射率的光谱数据,可考虑将类沙尘粒子和水溶性粒子的复折射率光谱数据(0.2~40μm)外推近似代替沙尘和霾气溶胶用于紫外和红外遥感。本研究可为利用紫外光谱和红外光谱定量遥感沙尘和霾气溶胶研究提供参考和依据。 展开更多
关键词 沙尘 粒子尺度谱分布 复折射指数
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Revisiting the size of nonspherical particles recorded by optical array probes with a new method based on the convex hull 被引量:1
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作者 Rong Zhang Xu Zhou +5 位作者 Hongyu Li Hanchao Li Lei Wei Yang Gao Qiang Xia Xiangyu Wang 《Atmospheric and Oceanic Science Letters》 CSCD 2022年第3期1-5,共5页
In recent years,the Cloud Imaging Probe(CIP)and Precipitation Imaging Probe(PIP)produced by Droplet Measurement Technologies(DMT)have been introduced by a number of meteorological research and operation centers in Chi... In recent years,the Cloud Imaging Probe(CIP)and Precipitation Imaging Probe(PIP)produced by Droplet Measurement Technologies(DMT)have been introduced by a number of meteorological research and operation centers in China.The supporting software provided by DMT,i.e.,PADS(Particle Analysis and Display System),cannot output detailed information on each individual particle,which definitely limits the in-depth utilization of cloud and precipitation particle image data in China.In this paper,particle-by-particle information was extracted by decompressing the CIP and PIP original particle image data,based on which a new definition of the dimension for nonspherical particles is proposed by using the area of the convex hull enclosing a particle to obtain the equivalent diameter of a circle with equal area.Based on the data detected during one flight in Inner Mongolia,the particle size distribution obtained using the new particle size definition and that used by the other four existing definitions are compared.The results show that the particle number concentration calculated using different particle size definitions can vary by up to an order of magnitude.The result obtained based on the new particle size definition is closest to that calculated with the area-equivalent diameter definition. 展开更多
关键词 Cloud and precipitation particles Particle image Particle size Particle size distribution
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