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  • 1
    Publication Date: 2019-01-25
    Description: An airborne Sun photometer was used to measure optical depths in clear atmospheres between the appearances of broken stratus clouds, and the optical depths in the vicinity of smokes. Results show that (human) activities can alter the chemical and optical properties of background atmospheres to affect their spectral optical depths. Effects of water vapor adsorption on aerosol optical depths are apparent, based on data of the water vapor absorption band centered around 940 nm. Smoke optical depths show increases above the background atmosphere by up to two orders of magnitude. When the total optical depths measured through clouds were corrected for molecular scattering and gaseous absorption by subtracting the total optical depths measured through the background atmosphere, the resultant values are lower than those of the background aerosol at short wavelengths. The spectral dependence of these cloud optical depths is neutral, however, in contrast to that of the background aerosol or the molecular atmosphere.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: Deutscher Wetterdienst, Annals from the German Meteorological Society, No. 25: 10th International Cloud Physics Conference Preprints, Volume 1; p 125-126
    Format: text
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  • 2
    Publication Date: 2019-07-13
    Description: Data derived from an airborne tracking-sun photometer are used to provide quantitative corrections for atmospheric effects in remotely sensed data. The atmospheric correction involves the validation of radiometric and atmospheric measurements and the application of single scattering approximation which permits the separation of Rayleigh scattering from aerosol scattering. Sun-photometer data are used to generate plots of spectral optical depths, aerosol size distributions, aerosol phase functions, and aerosol single-scattering albedos. The atmospheric correction model and the atmospheric optical properties are incorporated into a program which is applied to two flightlines of data. Atmospheric corrections tested on remotely sensed data permitted the removal of limb brightening, although the results require verification by means of ground measurements.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: Symposium on FIFE - First ISLSCP Field Experiment; Feb 07, 1990 - Feb 09, 1990; Anaheim, CA; United States
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