Weather data from the MISU weather station during the SWERUS-C3 Arctic Ocean expedition in 2014
John Prytherch, Michael Tjernström
Measurements of near-surface wind speed and direction, temperature, relative humidity, air pressure, shortwave and longwave downwelling radiation, and surface temperature (determined from infrared measurement) from the Eastern Arctic Ocean in July to October 2014.
The dataset provides rare high quality meteorological observations from sea-ice regions of the Arctic Ocean. They enable analysis of meteorological conditions and provide context for other measurements and analysis associated with the expedition.
Measurements are from the MISU weather station installed on icebreaker Oden’s 7th deck at 25 m above sea level during the SWERUS-C3 expedition to the Arctic Ocean. Additional measurements of temperature and humidity were also made on Oden’s foremast at 20 m above sea level. These data were processed as part of the Arctic Clouds in Summer Experiment (ACSE).
AtmosphereWeather observationsWeather stationMeteorologyArctic boundary layerArctic cloudsHigh ArcticArctic OceanLaptev SeaChukchi SeaEast Siberian SeaKara SeaSWERUS-C3ACSEOden
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References
Tjernström, M., Achtert, P., Shupe, M. D., Prytherch, J., Sedlar, J., Brooks, B. J., Brooks, I. M., Persson, P. O. G., Sotiropoulou, G., Salisbury, D. J. (2019). Arctic summer air-mass transformation, surface inversions and the surface energy budget. Journal of Climate: 32, 769–789. https://doi.org/10.1175/JCLI-D-18-0216.1
Sotiropoulou, G., Tjernström, M., Savre, J., Ekman, A. M. L., Hartung, K., and Sedlar, J. (2018). Warm-air advection and air-mass transformation over melting sea ice in the summer Arctic. Quarterly Journal of the Royal Meteorological Society: 144, 2449–2462. https://doi.org/10.1002/qj.3316
Prytherch, J., Brooks, I. M., Crill, P. M., Thornton, B. F., Salisbury, D. J., Tjernström, M., Anderson, L. G., Geibel, M. C., Humborg, C. (2017): Direct determination of the air-sea CO2 gas transfer velocity in Arctic sea-ice regions. Geophys. Res. Lett., 44. https://doi.org/10.1002/2017GL073593
Sotiropoulou, G., Tjernström, M., Sedlar, J., Achtert, P., Brooks, B. J., Brooks, I. M., Persson, P. O. G., Prytherch, J., Salisbury, D. J., Shupe, M. D., Johnston, P. E., Wolfe, D. (2016): Atmospheric conditions during the Arctic Clouds in Summer Experiment (ACSE): Contrasting open-water and sea-ice surfaces during melt and freeze-up seasons. J. Clim., 29, 8721– 8744. https://doi.org/10.1175/JCLI-D-16-0211.1
Achtert, P., Brooks, I. M., Brooks, B. J., Prytherch, J., Persson, P. O. G., Tjernström, M. (2015): Measurement of wind profiles over the Arctic Ocean from ship-borne Doppler lidar. Atmos. Meas. Tech. 8, 4993-5007. https://doi.org/10.5194/amt-8-4993-2015
Tjernström, M., Shupe, M. D., Brooks, I. M., Persson, P. O. G., Prytherch, J., Salisbury, D. J., Sedlar, J., Achtert, P., Brooks, B. J., Johnston, P. E, Sotiropoulou, G., Wolfe, D. (2015): Warm-air advection, air mass transformation and fog causes rapid ice melt. Geophys. Res. Lett., 42. https://doi.org/10.1002/2015GL064373
Data description
Data from the MISU weather station, averaged over either 1 or 30-minute intervals. Three data formats are available: Matlab (.mat), NetCDF (.nc) and comma separated value (.csv) text, with an accompanying readme (.rtf) file.
Comments
Version history
Version 2.0
Initial release. Also known as version 2.1.Version 1.0
Not published.Project
Arctic Clouds in Summer Experiment (ACSE). This was a component in the SWERUS-C3 international research expedition 2014 using icebreaker Oden in the Arctic Ocean, with base funding from the Swedish Knut and Alice Wallenberg Foundation.
Publisher
Bolin Centre Database
First name
John
Last name or organisation
Prytherch
Email address
Address
Department of Meteorology (MISU); Stockholm University
Postal code
SE-106 91
City
Stockholm
Country
Sweden
GCMD science keyword
Earth science > Atmosphere
GCMD location
Ocean > Arctic Ocean
Dataset language
English
Begin date
2014-07-04
End date
2014-10-03
DOI
Time
Versions
- 3 2022-01-26T13:47:46.580539+00:00
- 2 2022-01-26T13:47:46.4097+00:00
- 3 2021-12-03T16:09:30.830117+00:00
- 2 2021-12-03T16:09:30.807066+00:00
- 3 2021-10-29T06:23:13.016906+00:00
- 3 2021-10-26T09:31:54.382103+00:00
- 2 2021-10-26T09:31:54.363918+00:00
- 3 2020-03-18T14:51:07.010675+00:00
- 3 2020-03-18T14:51:07+00:00
- 2 2019-09-09T16:54:50.001489+00:00
- 2 2019-09-09T16:54:50+00:00

