Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017

The two concerted field campaigns, Arctic CLoud Observations Using airborne measurements during polar Day (ACLOUD) and the Physical feedbacks of Arctic planetary boundary level Sea ice, Cloud and AerosoL (PASCAL), took place near Svalbard from 23 May to 26 June 2017. They were focused on studying Ar...

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Main Authors: Knudsen, Erlend M., Heinold, Bernd, Dahlke, Sandro, Bozem, Heiko, Crewell, Susanne, Gorodetskaya, Irina V., Heygster, Georg, Kunkel, Daniel, Maturilli, Marion, Mech, Mario, Viceto, Carolina, Rinke, Annette, Schmithüsen, Holger, Ehrlich, André, Macke, Andreas, Lüpkes, Christof, Wendisch, Manfred
Format: Article in Journal/Newspaper
Language:English
Published: Katlenburg-Lindau : EGU 2018
Subjects:
Online Access:https://oa.tib.eu/renate/handle/123456789/11934
https://doi.org/10.34657/10967
id fttibhannoverren:oai:oa.tib.eu:123456789/11934
record_format openpolar
spelling fttibhannoverren:oai:oa.tib.eu:123456789/11934 2024-09-15T18:15:35+00:00 Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017 Knudsen, Erlend M. Heinold, Bernd Dahlke, Sandro Bozem, Heiko Crewell, Susanne Gorodetskaya, Irina V. Heygster, Georg Kunkel, Daniel Maturilli, Marion Mech, Mario Viceto, Carolina Rinke, Annette Schmithüsen, Holger Ehrlich, André Macke, Andreas Lüpkes, Christof Wendisch, Manfred 2018 application/pdf https://oa.tib.eu/renate/handle/123456789/11934 https://doi.org/10.34657/10967 eng eng Katlenburg-Lindau : EGU ESSN:1680-7324 DOI:https://doi.org/10.5194/acp-18-17995-2018 https://oa.tib.eu/renate/handle/123456789/11934 http://dx.doi.org/10.34657/10967 CC BY 4.0 Unported https://creativecommons.org/licenses/by/4.0 frei zugänglich ddc:550 advection cloud cover cloud microphysics meteorology summer synoptic meteorology Arctic Svalbard Svalbard and Jan Mayen status-type:publishedVersion doc-type:Article doc-type:Text 2018 fttibhannoverren https://doi.org/10.34657/1096710.5194/acp-18-17995-2018 2024-06-26T23:32:42Z The two concerted field campaigns, Arctic CLoud Observations Using airborne measurements during polar Day (ACLOUD) and the Physical feedbacks of Arctic planetary boundary level Sea ice, Cloud and AerosoL (PASCAL), took place near Svalbard from 23 May to 26 June 2017. They were focused on studying Arctic mixed-phase clouds and involved observations from two airplanes (ACLOUD), an icebreaker (PASCAL) and a tethered balloon, as well as ground-based stations. Here, we present the synoptic development during the <span classCombining double low line"inline-formula 35-day period of the campaigns, using near-surface and upper-air meteorological observations, as well as operational satellite, analysis, and reanalysis data. Over the campaign period, short-term synoptic variability was substantial, dominating over the seasonal cycle. During the first campaign week, cold and dry Arctic air from the north persisted, with a distinct but seasonally unusual cold air outbreak. Cloudy conditions with mostly low-level clouds prevailed. The subsequent 2 weeks were characterized by warm and moist maritime air from the south and east, which included two events of warm air advection. These synoptical disturbances caused lower cloud cover fractions and higher-reaching cloud systems. In the final 2 weeks, adiabatically warmed air from the west dominated, with cloud properties strongly varying within the range of the two other periods. Results presented here provide synoptic information needed to analyze and interpret data of upcoming studies from ACLOUD/PASCAL, while also offering unprecedented measurements in a sparsely observed region. Article in Journal/Newspaper Jan Mayen Sea ice Svalbard Renate - Repositorium für Naturwissenschaften und Technik (TIB Hannover)
institution Open Polar
collection Renate - Repositorium für Naturwissenschaften und Technik (TIB Hannover)
op_collection_id fttibhannoverren
language English
topic ddc:550
advection
cloud cover
cloud microphysics
meteorology
summer
synoptic meteorology
Arctic
Svalbard
Svalbard and Jan Mayen
spellingShingle ddc:550
advection
cloud cover
cloud microphysics
meteorology
summer
synoptic meteorology
Arctic
Svalbard
Svalbard and Jan Mayen
Knudsen, Erlend M.
Heinold, Bernd
Dahlke, Sandro
Bozem, Heiko
Crewell, Susanne
Gorodetskaya, Irina V.
Heygster, Georg
Kunkel, Daniel
Maturilli, Marion
Mech, Mario
Viceto, Carolina
Rinke, Annette
Schmithüsen, Holger
Ehrlich, André
Macke, Andreas
Lüpkes, Christof
Wendisch, Manfred
Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017
topic_facet ddc:550
advection
cloud cover
cloud microphysics
meteorology
summer
synoptic meteorology
Arctic
Svalbard
Svalbard and Jan Mayen
description The two concerted field campaigns, Arctic CLoud Observations Using airborne measurements during polar Day (ACLOUD) and the Physical feedbacks of Arctic planetary boundary level Sea ice, Cloud and AerosoL (PASCAL), took place near Svalbard from 23 May to 26 June 2017. They were focused on studying Arctic mixed-phase clouds and involved observations from two airplanes (ACLOUD), an icebreaker (PASCAL) and a tethered balloon, as well as ground-based stations. Here, we present the synoptic development during the <span classCombining double low line"inline-formula 35-day period of the campaigns, using near-surface and upper-air meteorological observations, as well as operational satellite, analysis, and reanalysis data. Over the campaign period, short-term synoptic variability was substantial, dominating over the seasonal cycle. During the first campaign week, cold and dry Arctic air from the north persisted, with a distinct but seasonally unusual cold air outbreak. Cloudy conditions with mostly low-level clouds prevailed. The subsequent 2 weeks were characterized by warm and moist maritime air from the south and east, which included two events of warm air advection. These synoptical disturbances caused lower cloud cover fractions and higher-reaching cloud systems. In the final 2 weeks, adiabatically warmed air from the west dominated, with cloud properties strongly varying within the range of the two other periods. Results presented here provide synoptic information needed to analyze and interpret data of upcoming studies from ACLOUD/PASCAL, while also offering unprecedented measurements in a sparsely observed region.
format Article in Journal/Newspaper
author Knudsen, Erlend M.
Heinold, Bernd
Dahlke, Sandro
Bozem, Heiko
Crewell, Susanne
Gorodetskaya, Irina V.
Heygster, Georg
Kunkel, Daniel
Maturilli, Marion
Mech, Mario
Viceto, Carolina
Rinke, Annette
Schmithüsen, Holger
Ehrlich, André
Macke, Andreas
Lüpkes, Christof
Wendisch, Manfred
author_facet Knudsen, Erlend M.
Heinold, Bernd
Dahlke, Sandro
Bozem, Heiko
Crewell, Susanne
Gorodetskaya, Irina V.
Heygster, Georg
Kunkel, Daniel
Maturilli, Marion
Mech, Mario
Viceto, Carolina
Rinke, Annette
Schmithüsen, Holger
Ehrlich, André
Macke, Andreas
Lüpkes, Christof
Wendisch, Manfred
author_sort Knudsen, Erlend M.
title Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017
title_short Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017
title_full Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017
title_fullStr Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017
title_full_unstemmed Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017
title_sort meteorological conditions during the acloud/pascal field campaign near svalbard in early summer 2017
publisher Katlenburg-Lindau : EGU
publishDate 2018
url https://oa.tib.eu/renate/handle/123456789/11934
https://doi.org/10.34657/10967
genre Jan Mayen
Sea ice
Svalbard
genre_facet Jan Mayen
Sea ice
Svalbard
op_relation ESSN:1680-7324
DOI:https://doi.org/10.5194/acp-18-17995-2018
https://oa.tib.eu/renate/handle/123456789/11934
http://dx.doi.org/10.34657/10967
op_rights CC BY 4.0 Unported
https://creativecommons.org/licenses/by/4.0
frei zugänglich
op_doi https://doi.org/10.34657/1096710.5194/acp-18-17995-2018
_version_ 1810453451086233600