Impact of the Microphysics in HARMONIE-AROME on Fog

This study concerns the impact of microphysics on the HARMONIE-AROME NWP model. In particular, the representation of cloud droplets in the single-moment bulk microphysics scheme is examined in relation to fog forecasting. We focus on the shape parameters of the cloud droplet size distribution and re...

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Published inAtmosphere Vol. 13; no. 12; p. 2127
Main Authors Contreras Osorio, Sebastián, Martín Pérez, Daniel, Ivarsson, Karl-Ivar, Nielsen, Kristian Pagh, de Rooy, Wim C., Gleeson, Emily, McAufield, Ewa
Format Journal Article
LanguageEnglish
Published Basel MDPI AG 01.12.2022
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Online AccessGet full text
ISSN2073-4433
2073-4433
DOI10.3390/atmos13122127

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Abstract This study concerns the impact of microphysics on the HARMONIE-AROME NWP model. In particular, the representation of cloud droplets in the single-moment bulk microphysics scheme is examined in relation to fog forecasting. We focus on the shape parameters of the cloud droplet size distribution and recent changes to the representation of the cloud droplet number concentration (CDNC). Two configurations of CDNC are considered: a profile that varies with height and a constant one. These aspects are examined together since few studies have considered their combined impact during fog situations. We present a set of six experiments performed for two non-idealised three-dimensional case studies over the Iberian Peninsula and the North Sea. One case displays both low clouds and fog, and the other shows a persistent fog field above sea. The experiments highlight the importance of the considered parameters that affect droplet sedimentation, which plays a key role in modelled fog. We show that none of the considered configurations can simultaneously represent all aspects of both cases. Hence, continued efforts are needed to introduce relationships between the governing parameters and the relevant atmospheric conditions.
AbstractList This study concerns the impact of microphysics on the HARMONIE-AROME NWP model. In particular, the representation of cloud droplets in the single-moment bulk microphysics scheme is examined in relation to fog forecasting. We focus on the shape parameters of the cloud droplet size distribution and recent changes to the representation of the cloud droplet number concentration (CDNC). Two configurations of CDNC are considered: a profile that varies with height and a constant one. These aspects are examined together since few studies have considered their combined impact during fog situations. We present a set of six experiments performed for two non-idealised three-dimensional case studies over the Iberian Peninsula and the North Sea. One case displays both low clouds and fog, and the other shows a persistent fog field above sea. The experiments highlight the importance of the considered parameters that affect droplet sedimentation, which plays a key role in modelled fog. We show that none of the considered configurations can simultaneously represent all aspects of both cases. Hence, continued efforts are needed to introduce relationships between the governing parameters and the relevant atmospheric conditions.
Audience Academic
Author Nielsen, Kristian Pagh
McAufield, Ewa
de Rooy, Wim C.
Contreras Osorio, Sebastián
Martín Pérez, Daniel
Ivarsson, Karl-Ivar
Gleeson, Emily
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  surname: McAufield
  fullname: McAufield, Ewa
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Snippet This study concerns the impact of microphysics on the HARMONIE-AROME NWP model. In particular, the representation of cloud droplets in the single-moment bulk...
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SubjectTerms Aerosols
Atmospheric conditions
Atmospheric models
Case studies
Cloud droplet concentration
cloud droplet number concentration
Cloud droplet size
Cloud droplet size distribution
Cloud droplets
cloud microphysics
Clouds
Configurations
Droplets
Environmental aspects
Experiments
Fog
Fog forecasting
HARMONIE-AROME
Ice
Low clouds
Mathematical models
Microphysics
Numerical weather forecasting
numerical weather prediction (NWP)
Parameters
R&D
Representations
Research & development
Sedimentation & deposition
Size distribution
Weather forecasting
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Title Impact of the Microphysics in HARMONIE-AROME on Fog
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