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A dataset of temperature, humidity, and liquid water path retrievals from a network of ground-based microwave radiometers dedicated to fog investigation

Pauline Martinet; Vinciane Unger; Frédéric Burnet; Jean-François Georgis; Maxime Hervo; Thierry Huet; Ulrich Löhnert; Eugene Miller; Emiliano Orlandi; Jeremy Price; Mathias Schröder; Guillaume Thomas
Bulletin of Atmospheric Science and Technology · Vol. 3, Issue 1-4 · 2022

Abstract

The database presented in this study has been acquired during the SOuth west FOGs 3D (SOFOG3D) experiment for processes study. This international campaign led by Météo-France during the winter 2019–2020 aimed at deploying a unique network of both in situ and remote sensing measurements in order to document spatial and temporal variabilities of fog events. To support this scientific objective but also to conduct first data assimilation experiments within the French convective scale model AROME, an un-precedented network of 8 ground-based microwave radiometers (MWR) has been deployed in 7 different locations known to be prone to fog occurrences. The database gives access to vertical profiles of temperature and humidity (both absolute and relative) from the surface up to 10 km altitude as well as integrated water vapor and liquid water path estimates. The retrieved profiles offer a very large database that can be exploited for several scientific purposes: fog process studies at specific location, documentation on the variability of fog properties at the regional scale, better understanding of the atmospheric boundary layer (ABL) height and dynamics during wintertime conditions, development of nowcasting products dedicated to fog alerts, data assimilation experiments to improve fog forecasts, development of synergetical advanced products, and evaluation of new model configurations with advanced parameterization or resolutions.

Bibliographic Information

JournalBulletin of Atmospheric Science and Technology
PublisherSpringer
Publication Date2022-12-01
Publication Year2022
Volume3
Issue1-4
Document TypeJournal Article
Print ISSN2662-1495
eISSN2662-1509
DOI10.1007/s42865-022-00049-w

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NARA Access Coverage2020-01-01~Current
Journal Homepagehttps://www.springer.com/journal/42865
Publisher PageOpen Publisher Page
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