首页> 外文会议>International symposium on atmospheric and ocean optics: atmospheric physics >COMPARISON OF THE RESULTS OF INVERSION OF THE SPECTRAL AEROSOL EXTINCTION COEFFICIENTS AND ANGULAR DEPENDENCES OF AEROSOL SCATTERING
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COMPARISON OF THE RESULTS OF INVERSION OF THE SPECTRAL AEROSOL EXTINCTION COEFFICIENTS AND ANGULAR DEPENDENCES OF AEROSOL SCATTERING

机译:光谱气溶胶消光系数和气溶胶散射角相关性反演结果的比较

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An array of spectral aerosol extinction coefficients is calculated from measurements of the spectral transparency of the atmosphere on a 1 km long horizontal path in 10 regions of the wavelength range 0.5 - 4 μm. An array of angular dependences of the aerosol scattering coefficients in the angular range 1.2 - 15° is obtained by means of an aureole photometer with closed scattering volume. Measurements were carried out under conditions of smoky atmosphere. Inverse problem was solved for two empirical data arrays obtained synchronously (200 realizations) and the aerosol particle cross section size distributions were calculated. It is shown that the results of two experiments are in quite good agreement in the particle size range from 0.18 to 1.8 μm. Objective. Determination of the aerosol particle size range, in which the results of aerosol monitoring by two instrumentation complexes are most representative. Method for solving the problem. The inverse problem was solved for two empirical data arrays: a) spectral aerosol extinction coefficients β_(ext)(λ) in the wavelength range 0.5 - 3.9 μm; b) angular dependences of the aerosol scattering coefficients β_(sct)(Φ) in the angular range Φ = 1.2 - 15° at the wavelength of 650 nm. The arrays β_(ext)(λ) and β_(sct)(Φ) were obtained in synchronous measurements by means of two independent instrumentation complexes. In order to obtain the aerosol particle cross-section size distribution dS/dr, the inverse problem was solved using the algorithms. The spectral dependence of the optical constants of aerosol particles was determined from the empirical data. Finally, two arrays of distributions dS/dr corresponding to the initial experiments data β_(ext)(λ) and β_(sct)(Φ) were calculated.
机译:根据在波长范围0.5-4μm的10个区域中1公里长的水平路径上大气的光谱透明度的测量值,计算出一系列光谱气溶胶的消光系数。借助于具有封闭散射体积的金相光度计获得了在1.2-15°的角度范围内的气溶胶散射系数的角度依赖性阵列。测量是在烟雾弥漫的条件下进行的。解决了同时获得的两个经验数据阵列(200个实现)的逆问题,并计算了气溶胶颗粒的横截面尺寸分布。结果表明,两个实验的结果在0.18至1.8μm的粒径范围内非常吻合。客观的。确定气雾剂粒径范围,其中两个仪器配合物监测气溶胶的结果最具代表性。解决问题的方法。针对两个经验数据阵列解决了反问题:a)波长范围为0.5-3.9μm的光谱气溶胶消光系数β_(ext)(λ); b)在波长650 nm处的角度范围Φ= 1.2-15°中,气溶胶散射系数β_(sct)(Φ)的角度依赖性。 β_(ext)(λ)和β_(sct)(Φ)阵列是通过两个独立的仪器配合物在同步测量中获得的。为了获得气溶胶颗粒的横截面尺寸分布dS / dr,使用该算法解决了反问题。从经验数据确定了气溶胶颗粒的光学常数的光谱依赖性。最后,计算出与初始实验数据β_(ext)(λ)和β_(sct)(Φ)对应的两个分布dS / dr阵列。

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