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Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations

In-situ marine cloud droplet number concentrations (CDNCs), cloud condensation nuclei (CCN), and CCN proxies, based on particle sizes and optical properties, are accumulated from seven field campaigns: ACTIVATE; NAAMES; CAMP(2)EX; ORACLES; SOCRATES; MARCUS; and CAPRICORN2. Each campaign involves air...

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Autores principales: Sanchez, Kevin J., Painemal, David, Brown, Matthew D., Crosbie, Ewan C., Gallo, Francesca, Hair, Johnathan W., Hostetler, Chris A., Jordan, Carolyn E., Robinson, Claire E., Scarino, Amy Jo, Shingler, Taylor J., Shook, Michael A., Thornhill, Kenneth L., Wiggins, Elizabeth B., Winstead, Edward L., Ziemba, Luke D., Chambers, Scott, Williams, Alastair, Humphries, Ruhi S, Keywood, Melita D., Ward, Jason P., Cravigan, Luke, McRobert, Ian M., Flynn, Connor, Kulkarni, Gourihar R., Russell, Lynn M., Roberts, Gregory C., McFarquhar, Greg M., Nenes, Athanasios, Woods, Sarah F., Reid, Jeffery S., Small-Griswold, Jennifer, Brooks, Sarah, Kirschler, Simon, Voigt, Christianne, Wang, Jian, Delene, David J., Quinn, Patricia K., Moore, Richard H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10359301/
https://www.ncbi.nlm.nih.gov/pubmed/37474611
http://dx.doi.org/10.1038/s41597-023-02372-z
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author Sanchez, Kevin J.
Painemal, David
Brown, Matthew D.
Crosbie, Ewan C.
Gallo, Francesca
Hair, Johnathan W.
Hostetler, Chris A.
Jordan, Carolyn E.
Robinson, Claire E.
Scarino, Amy Jo
Shingler, Taylor J.
Shook, Michael A.
Thornhill, Kenneth L.
Wiggins, Elizabeth B.
Winstead, Edward L.
Ziemba, Luke D.
Chambers, Scott
Williams, Alastair
Humphries, Ruhi S
Keywood, Melita D.
Ward, Jason P.
Cravigan, Luke
McRobert, Ian M.
Flynn, Connor
Kulkarni, Gourihar R.
Russell, Lynn M.
Roberts, Gregory C.
McFarquhar, Greg M.
Nenes, Athanasios
Woods, Sarah F.
Reid, Jeffery S.
Small-Griswold, Jennifer
Brooks, Sarah
Kirschler, Simon
Voigt, Christianne
Wang, Jian
Delene, David J.
Quinn, Patricia K.
Moore, Richard H.
author_facet Sanchez, Kevin J.
Painemal, David
Brown, Matthew D.
Crosbie, Ewan C.
Gallo, Francesca
Hair, Johnathan W.
Hostetler, Chris A.
Jordan, Carolyn E.
Robinson, Claire E.
Scarino, Amy Jo
Shingler, Taylor J.
Shook, Michael A.
Thornhill, Kenneth L.
Wiggins, Elizabeth B.
Winstead, Edward L.
Ziemba, Luke D.
Chambers, Scott
Williams, Alastair
Humphries, Ruhi S
Keywood, Melita D.
Ward, Jason P.
Cravigan, Luke
McRobert, Ian M.
Flynn, Connor
Kulkarni, Gourihar R.
Russell, Lynn M.
Roberts, Gregory C.
McFarquhar, Greg M.
Nenes, Athanasios
Woods, Sarah F.
Reid, Jeffery S.
Small-Griswold, Jennifer
Brooks, Sarah
Kirschler, Simon
Voigt, Christianne
Wang, Jian
Delene, David J.
Quinn, Patricia K.
Moore, Richard H.
author_sort Sanchez, Kevin J.
collection PubMed
description In-situ marine cloud droplet number concentrations (CDNCs), cloud condensation nuclei (CCN), and CCN proxies, based on particle sizes and optical properties, are accumulated from seven field campaigns: ACTIVATE; NAAMES; CAMP(2)EX; ORACLES; SOCRATES; MARCUS; and CAPRICORN2. Each campaign involves aircraft measurements, ship-based measurements, or both. Measurements collected over the North and Central Atlantic, Indo-Pacific, and Southern Oceans, represent a range of clean to polluted conditions in various climate regimes. With the extensive range of environmental conditions sampled, this data collection is ideal for testing satellite remote detection methods of CDNC and CCN in marine environments. Remote measurement methods are vital to expanding the available data in these difficult-to-reach regions of the Earth and improving our understanding of aerosol-cloud interactions. The data collection includes particle composition and continental tracers to identify potential contributing CCN sources. Several of these campaigns include High Spectral Resolution Lidar (HSRL) and polarimetric imaging measurements and retrievals that will be the basis for the next generation of space-based remote sensors and, thus, can be utilized as satellite surrogates.
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spelling pubmed-103593012023-07-22 Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations Sanchez, Kevin J. Painemal, David Brown, Matthew D. Crosbie, Ewan C. Gallo, Francesca Hair, Johnathan W. Hostetler, Chris A. Jordan, Carolyn E. Robinson, Claire E. Scarino, Amy Jo Shingler, Taylor J. Shook, Michael A. Thornhill, Kenneth L. Wiggins, Elizabeth B. Winstead, Edward L. Ziemba, Luke D. Chambers, Scott Williams, Alastair Humphries, Ruhi S Keywood, Melita D. Ward, Jason P. Cravigan, Luke McRobert, Ian M. Flynn, Connor Kulkarni, Gourihar R. Russell, Lynn M. Roberts, Gregory C. McFarquhar, Greg M. Nenes, Athanasios Woods, Sarah F. Reid, Jeffery S. Small-Griswold, Jennifer Brooks, Sarah Kirschler, Simon Voigt, Christianne Wang, Jian Delene, David J. Quinn, Patricia K. Moore, Richard H. Sci Data Data Descriptor In-situ marine cloud droplet number concentrations (CDNCs), cloud condensation nuclei (CCN), and CCN proxies, based on particle sizes and optical properties, are accumulated from seven field campaigns: ACTIVATE; NAAMES; CAMP(2)EX; ORACLES; SOCRATES; MARCUS; and CAPRICORN2. Each campaign involves aircraft measurements, ship-based measurements, or both. Measurements collected over the North and Central Atlantic, Indo-Pacific, and Southern Oceans, represent a range of clean to polluted conditions in various climate regimes. With the extensive range of environmental conditions sampled, this data collection is ideal for testing satellite remote detection methods of CDNC and CCN in marine environments. Remote measurement methods are vital to expanding the available data in these difficult-to-reach regions of the Earth and improving our understanding of aerosol-cloud interactions. The data collection includes particle composition and continental tracers to identify potential contributing CCN sources. Several of these campaigns include High Spectral Resolution Lidar (HSRL) and polarimetric imaging measurements and retrievals that will be the basis for the next generation of space-based remote sensors and, thus, can be utilized as satellite surrogates. Nature Publishing Group UK 2023-07-20 /pmc/articles/PMC10359301/ /pubmed/37474611 http://dx.doi.org/10.1038/s41597-023-02372-z Text en © This is a U.S. Government work and not under copyright protection in the US; foreign copyright protection may apply 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Data Descriptor
Sanchez, Kevin J.
Painemal, David
Brown, Matthew D.
Crosbie, Ewan C.
Gallo, Francesca
Hair, Johnathan W.
Hostetler, Chris A.
Jordan, Carolyn E.
Robinson, Claire E.
Scarino, Amy Jo
Shingler, Taylor J.
Shook, Michael A.
Thornhill, Kenneth L.
Wiggins, Elizabeth B.
Winstead, Edward L.
Ziemba, Luke D.
Chambers, Scott
Williams, Alastair
Humphries, Ruhi S
Keywood, Melita D.
Ward, Jason P.
Cravigan, Luke
McRobert, Ian M.
Flynn, Connor
Kulkarni, Gourihar R.
Russell, Lynn M.
Roberts, Gregory C.
McFarquhar, Greg M.
Nenes, Athanasios
Woods, Sarah F.
Reid, Jeffery S.
Small-Griswold, Jennifer
Brooks, Sarah
Kirschler, Simon
Voigt, Christianne
Wang, Jian
Delene, David J.
Quinn, Patricia K.
Moore, Richard H.
Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
title Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
title_full Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
title_fullStr Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
title_full_unstemmed Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
title_short Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
title_sort multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
topic Data Descriptor
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10359301/
https://www.ncbi.nlm.nih.gov/pubmed/37474611
http://dx.doi.org/10.1038/s41597-023-02372-z
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