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On the Quantitative Low-Level Aerosol Measurements Using Ceilometer-Type Lidar
Author(s) -
AnuMaija Sundström,
Timo Nousiainen,
Tuukka Petäjä
Publication year - 2009
Publication title -
journal of atmospheric and oceanic technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.774
H-Index - 124
eISSN - 1520-0426
pISSN - 0739-0572
DOI - 10.1175/2009jtecha1252.1
Subject(s) - lidar , aerosol , ceilometer , calibration , environmental science , remote sensing , backscatter (email) , in situ , particle (ecology) , physics , meteorology , geology , computer science , telecommunications , oceanography , quantum mechanics , wireless
The objective of this work is to investigate whether a commercial ceilometer-type lidar can be used as a quantitative aerosol measurement instrument. To this end, lidar backscattering measurements are compared with exact theoretical calculations of backscattering, which are based on in situ–measured size distributions and account for uncertainties in particle composition and shape. The results show that the differences between simulated and measured backscattering remain nearly constant and within the uncertainties involved. The differences are most plausibly explained by an error in the overlap function of the lidar and/or errors in the calibration of either the lidar or the in situ instruments used to measure the aerosol size distribution. Occasionally, large differences occur that are obviously connected to the unrepresentativeness of the in situ and lidar measurement volumes because of insufficient atmospheric mixing. The results imply that the absolute accuracy of the instrument investigated...

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