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Using HawkEye Level-2 Satellite Data for Remote Sensing Tasks in the Presence of Dust Aerosol  id статьи: 3151
Тип публикации
статья в журнале
Язык
En
Журнал
Atmosphere

ISSN:20734433
Год
2024
Выходные данные
том 15
выпуск 5
страницы № 617
EDN
Абстракт
This paper is the first to examine the operation of the HawkEye satellite in the presence of dust aerosol. The study region is the Black Sea. Dust transport dates were identified using visual inspection of satellite imagery, back-kinematic HYSPLIT trajectory analysis, CALIPSO aerosol stratification and typing maps, and the global forecasting model SILAM. In a comparative analysis of in-situ and satellite measurements of the remote sensing reflectance, an error in the atmospheric correction of HawkEye measurements was found both for a clean atmosphere and in the presence of an absorbing aerosol. It is shown that, on average, the dependence of the atmospheric correction error on wavelength has the form of a power function of the form from λ−3 to λ−9. The largest errors are in the short-wavelength region of the spectrum (412–443 nm) for the dust and dusty marine aerosol domination dates. A comparative analysis of satellite and in situ measurements of the optical characteristics of the atmosphere, namely the AOD and the Ångström parameter, was carried out. It is shown that the aerosol model used by HawkEye underestimates the Angström parameter and, most likely, large errors and outliers in satellite measurements are associated with this. © 2024 by the authors.
Ключевые слова
AERONET, aerosol optical depth, atmospheric aerosol, atmospheric correction, Black Sea, coarse particles, dust, dust aerosol, fine particles
Дата занесения
2024-07-31 14:14:23
Scopus
Статус есть
Квартиль Q2
WoS
Статус есть
Квартиль Q3
РИНЦ
Статус есть
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FNNN-2024-0012
Анализ, диагноз и оперативный прогноз состояния гидрофизических и гидрохимических полей морских акваторий на основе математического моделирования с использованием данных дистанционных и контактных методов измерений