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Retrieval of spatio-temporal distributions of particle parameters from multiwavelength lidar measurements using the linear estimation technique and comparison with AERONET

机译:使用线性估计技术并与AERONET比较,从多波长激光雷达测量中检索粒子参数的时空分布

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摘要

The results of the application of the linear estimation technique to multiwavelength Raman lidar measurements performed during the summer of 2011 in Greenbelt, MD, USA, are presented. We demonstrate that multi-wavelength lidars are capable not only of providing vertical profiles of particle properties but also of revealing the spatio-temporal evolution of aerosol features. The nighttime 3β+1α lidar measurements on 21 and 22 July were inverted to spatio-temporal distributions of particle microphysical parameters, such as volume, number density, effective radius and the complex refractive index. The particle volume and number density show strong variation during the night, while the effective radius remains approximately constant. The real part of the refractive index demonstrates a slight decreasing tendency in a region of enhanced extinction coefficient. The linear estimation retrievals are stable and provide time series of particle parameters as a function of height at 4 min resolution. AERONET observations are compared with multiwavelength lidar retrievals showing good agreement.
机译:提出了将线性估计技术应用于2011年夏季在美国马里兰州格林贝尔特进行的多波长拉曼激光雷达测量的结果。我们证明了多波长激光雷达不仅能够提供粒子特性的垂直剖面,而且能够揭示气溶胶特征的时空演变。将7月21日至22日夜间的3β+1α激光雷达测量结果转换为颗粒微物理参数的时空分布,例如体积,数量密度,有效半径和复折射率。夜间的粒子体积和数量密度显示出很大的变化,而有效半径保持近似恒定。折射率的实部在消光系数增强的区域显示出轻微的下降趋势。线性估计检索是稳定的,并提供了4分钟分辨率下作为高度函数的粒子参数的时间序列。将AERONET观测结果与多波长激光雷达反演结果进行了比较,显示出很好的一致性。

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