Cloud radiative forcing, LWP and cloud-free albedo derived from airborne broadband irradiance observations during the AFLUX and ACLOUD campaign

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Bibliographic Details
Main Authors: Stapf, Johannes, Ehrlich, André, Wendisch, Manfred
Format: Dataset Open Access
Language:en
Published: PANGAEA 2021
Subjects:
AC; AC3; ACLOUD; Aircraft; Albedo; Arctic Amplification; CRF; Flight 08; Flight 09; Flight 11; Flight 12; Flight 13; Flight 14; Flight 15; Flight 18; Flight 19; Flight 20; Flight 21; Flight 22; Flight 24; LWP; P5_206_ACLOUD_2017_1705190402; P5_206_ACLOUD_2017_1705270801; P5_206_ACLOUD_2017_1705291001; P5_206_ACLOUD_2017_1706051301; P5_206_ACLOUD_2017_1706081401; P5_206_ACLOUD_2017_1706141701; P5_206_ACLOUD_2017_1706182001; P5_206_ACLOUD_2017_1706202101; P5_206_ACLOUD_2017_1706252301; P5_216_AFLUX_2019_1903210301; P5_216_AFLUX_2019_1903230401; P5_216_AFLUX_2019_1903240501; P5_216_AFLUX_2019_1903250602; P5_216_AFLUX_2019_1903300701; P5_216_AFLUX_2019_1903310801; P5_216_AFLUX_2019_1904010901; P5_216_AFLUX_2019_1904031002; P5_216_AFLUX_2019_1904041101; P5_216_AFLUX_2019_1904061202; P5_216_AFLUX_2019_1904071301; P5_216_AFLUX_2019_1904081401; P5_216_AFLUX_2019_1904111501; P5-206_ACLOUD_2017; P5-216_AFLUX_2019; P6_206_ACLOUD_2017_1705290701; P6_206_ACLOUD_2017_1705300801; P6_206_ACLOUD_2017_1706021001; P6_206_ACLOUD_2017_1706041101; P6_206_ACLOUD_2017_1706051201; P6_206_ACLOUD_2017_1706081301; P6_206_ACLOUD_2017_1706091401; P6_206_ACLOUD_2017_1706161701; P6_206_ACLOUD_2017_1706171801; P6_206_ACLOUD_2017_1706181901; P6_206_ACLOUD_2017_1706202001; P6_206_ACLOUD_2017_1706232101; P6_206_ACLOUD_2017_1706262301; P6_206_ACLOUD_2017_1706292501; P6-206_ACLOUD_2017; POLAR 5; POLAR 6; RF02; RF03; RF04; RF05; RF06; RF07; RF08; RF09; RF10; RF11; RF12; RF13; RF14; RF15; RF17; RF20; RF21; RF23; Svalbard
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author Stapf, Johannes
Ehrlich, André
Wendisch, Manfred
author_facet Stapf, Johannes
Ehrlich, André
Wendisch, Manfred
collection Datos científicos de ciencias marinas y ambientales
contents Longwave and shortwave cloud radiative forcing derived from broadband irradiance observations during the AFLUX (Airborne measurements of radiative and turbulent FLUXes of energy and momentum in the Arctic boundary layer, March / April 2019) and the ACLOUD (Arctic CLoud Observations Using airborne measurements during polar Day, May / June 2017) campaign. This dataset contains only low-level flight sections. In addition, a cloud liquid water path equivalent derived from the shortwave transmissivity is given and a cloud-free albedo estimate during cloudy observations. The cloud radiative forcing over sea ice during ACLOUD (https://doi.pangaea.de/10.1594/PANGAEA.909289) is extented to the entire marginal sea ice zone in this dataset.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_932010
institution PANGAEA
language en
publishDate 2021
publisher PANGAEA
record_format pangaea
spellingShingle Cloud radiative forcing, LWP and cloud-free albedo derived from airborne broadband irradiance observations during the AFLUX and ACLOUD campaign
Stapf, Johannes
Ehrlich, André
Wendisch, Manfred
AC; AC3; ACLOUD; Aircraft; Albedo; Arctic Amplification; CRF; Flight 08; Flight 09; Flight 11; Flight 12; Flight 13; Flight 14; Flight 15; Flight 18; Flight 19; Flight 20; Flight 21; Flight 22; Flight 24; LWP; P5_206_ACLOUD_2017_1705190402; P5_206_ACLOUD_2017_1705270801; P5_206_ACLOUD_2017_1705291001; P5_206_ACLOUD_2017_1706051301; P5_206_ACLOUD_2017_1706081401; P5_206_ACLOUD_2017_1706141701; P5_206_ACLOUD_2017_1706182001; P5_206_ACLOUD_2017_1706202101; P5_206_ACLOUD_2017_1706252301; P5_216_AFLUX_2019_1903210301; P5_216_AFLUX_2019_1903230401; P5_216_AFLUX_2019_1903240501; P5_216_AFLUX_2019_1903250602; P5_216_AFLUX_2019_1903300701; P5_216_AFLUX_2019_1903310801; P5_216_AFLUX_2019_1904010901; P5_216_AFLUX_2019_1904031002; P5_216_AFLUX_2019_1904041101; P5_216_AFLUX_2019_1904061202; P5_216_AFLUX_2019_1904071301; P5_216_AFLUX_2019_1904081401; P5_216_AFLUX_2019_1904111501; P5-206_ACLOUD_2017; P5-216_AFLUX_2019; P6_206_ACLOUD_2017_1705290701; P6_206_ACLOUD_2017_1705300801; P6_206_ACLOUD_2017_1706021001; P6_206_ACLOUD_2017_1706041101; P6_206_ACLOUD_2017_1706051201; P6_206_ACLOUD_2017_1706081301; P6_206_ACLOUD_2017_1706091401; P6_206_ACLOUD_2017_1706161701; P6_206_ACLOUD_2017_1706171801; P6_206_ACLOUD_2017_1706181901; P6_206_ACLOUD_2017_1706202001; P6_206_ACLOUD_2017_1706232101; P6_206_ACLOUD_2017_1706262301; P6_206_ACLOUD_2017_1706292501; P6-206_ACLOUD_2017; POLAR 5; POLAR 6; RF02; RF03; RF04; RF05; RF06; RF07; RF08; RF09; RF10; RF11; RF12; RF13; RF14; RF15; RF17; RF20; RF21; RF23; Svalbard
Longwave and shortwave cloud radiative forcing derived from broadband irradiance observations during the AFLUX (Airborne measurements of radiative and turbulent FLUXes of energy and momentum in the Arctic boundary layer, March / April 2019) and the ACLOUD (Arctic CLoud Observations Using airborne measurements during polar Day, May / June 2017) campaign. This dataset contains only low-level flight sections. In addition, a cloud liquid water path equivalent derived from the shortwave transmissivity is given and a cloud-free albedo estimate during cloudy observations. The cloud radiative forcing over sea ice during ACLOUD (https://doi.pangaea.de/10.1594/PANGAEA.909289) is extented to the entire marginal sea ice zone in this dataset.
title Cloud radiative forcing, LWP and cloud-free albedo derived from airborne broadband irradiance observations during the AFLUX and ACLOUD campaign
topic AC; AC3; ACLOUD; Aircraft; Albedo; Arctic Amplification; CRF; Flight 08; Flight 09; Flight 11; Flight 12; Flight 13; Flight 14; Flight 15; Flight 18; Flight 19; Flight 20; Flight 21; Flight 22; Flight 24; LWP; P5_206_ACLOUD_2017_1705190402; P5_206_ACLOUD_2017_1705270801; P5_206_ACLOUD_2017_1705291001; P5_206_ACLOUD_2017_1706051301; P5_206_ACLOUD_2017_1706081401; P5_206_ACLOUD_2017_1706141701; P5_206_ACLOUD_2017_1706182001; P5_206_ACLOUD_2017_1706202101; P5_206_ACLOUD_2017_1706252301; P5_216_AFLUX_2019_1903210301; P5_216_AFLUX_2019_1903230401; P5_216_AFLUX_2019_1903240501; P5_216_AFLUX_2019_1903250602; P5_216_AFLUX_2019_1903300701; P5_216_AFLUX_2019_1903310801; P5_216_AFLUX_2019_1904010901; P5_216_AFLUX_2019_1904031002; P5_216_AFLUX_2019_1904041101; P5_216_AFLUX_2019_1904061202; P5_216_AFLUX_2019_1904071301; P5_216_AFLUX_2019_1904081401; P5_216_AFLUX_2019_1904111501; P5-206_ACLOUD_2017; P5-216_AFLUX_2019; P6_206_ACLOUD_2017_1705290701; P6_206_ACLOUD_2017_1705300801; P6_206_ACLOUD_2017_1706021001; P6_206_ACLOUD_2017_1706041101; P6_206_ACLOUD_2017_1706051201; P6_206_ACLOUD_2017_1706081301; P6_206_ACLOUD_2017_1706091401; P6_206_ACLOUD_2017_1706161701; P6_206_ACLOUD_2017_1706171801; P6_206_ACLOUD_2017_1706181901; P6_206_ACLOUD_2017_1706202001; P6_206_ACLOUD_2017_1706232101; P6_206_ACLOUD_2017_1706262301; P6_206_ACLOUD_2017_1706292501; P6-206_ACLOUD_2017; POLAR 5; POLAR 6; RF02; RF03; RF04; RF05; RF06; RF07; RF08; RF09; RF10; RF11; RF12; RF13; RF14; RF15; RF17; RF20; RF21; RF23; Svalbard
url https://doi.org/10.1594/PANGAEA.932010