Sea surface temperature changes due to polar lows over the Nordic Seas
DOI:
https://doi.org/10.21638/spbu07.2020.403Abstract
In this study we analyzed possible changes in sea surface temperature (SST) caused by the passage of polar lows. Polar lows are extreme atmospheric phenomena inherent to high latitudes. They develop sea surface wind speeds from 15 m/s up to hurricane force values and are characterized by small sizes (on average, 300 km) and lifetimes (less than two days), which complicates their detection and study. It is assumed that as in case of tropical cyclones, which may considerably lower SST due to intense mixing and entrainment of colder waters to the ocean upper mixed layer, polar lows could similarly influence SST. Moreover, in high latitude areas, where salt stratification may be present instead of temperature stratification, SST may increase due to mixing with a deeper warmer layer. In this study 330 polar lows were analyzed using satellite passive microwave radiometer measurements of SST. As a result, 47 cases were found in which average SST values changed in polar low forcing areas. Out of these cases, in six cases an SST increase of at least 0.5 °С was found, and in fifteen cases an SST decrease of at least 0.5 °С was found. This indicates that upper ocean response to polar lows is quite a rare phenomenon, which should be further analyzed along with its possible role in the ocean-ice-atmosphere system.
Keywords:
polar low, sea surface temperature, Nordic Seas, remote sensing
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References
Blechschmidt, A.-M. (2008). A 2-year climatology of polar low events over the Nordic seas from satellite remote sensing. Geophysical Research Letters, 35, L09815.
Diansky, N. A., Panasenkova, I. I. and Fomin, V. V. (2019). Investigation of the Barents Sea Upper Layer Response to the Polar Low in 1975. Physical Oceanography, 26 (6), 467–483. (In Russian)
Gentemann, C. L. (2014). Three way validation of MODIS and AMSR-E sea surface temperatures. Journal of Geophysical Research: Oceans, 119, 2583–2598.
Isachsen, P. E., Drivdal, M., Eastwood, S., Gusdal, Y., Noer, G. and Saetra, Ø. (2013). Observations of the ocean response to cold air outbreaks and polar lows over the Nordic Seas. Geophysical Research Letters, 40, 3667–3671.
Liu, X., Wei, J., Zhang, D. ‐L. and Miller, W. (2019). Parameterizing sea surface temperature cooling induced by tropical cyclones: 1. Theory and an application to Typhoon Matsa (2005). Journal of Geophysical Research: Oceans, 124, 1215–123.
Meyers, P. C., Shay, L. K., Brewster, J. K. and Jaimes, B. (2016). Observed ocean thermal response to Hurricanes Gustav and Ike. Journal of Geophysical Research: Oceans, 121, 162–179.
Noer, G., Saetra, Ø., Lien, T., Gusdal, Y. (2011). A climatological study of polar lows in the Nordic Seas. Q. J. R. Meteorol. Soc., 137(660), 1762–1772.
Podaac.jpl.nasa.gov (2018). NASA’s Physical Oceanography Distributed Active Archive Center. [online] Available at: https://podaac.jpl.nasa.gov/dataset/MW_IR_OI-REMSS-L4-GLOB-v4.0/ [Accessed 01.05.2019].
Price, J. F. (1981). Upper ocean response to a hurricane. Journal of Physical Oceanography, 11 (2), 153–175. Rasmussen, E. and Turner, J. (2003). Polar Lows: Mesoscale Weather Systems in the Polar Regions. Cambridge, U. K.: Cambridge Univ. Press.
Remss.com (2018). Remote Sensing Systems. [online] Available at: http://www.remss.com/missions/ amsr/ [Accessed May 1, 2019].
Rojo, M., Claud, C., Mallet, P., Noer, G., Carleton, A. and Vicomte, M. (2015). Polar low tracks over the Nordic seas: A 14-winter climatic analysis. Tellus, Ser. A, 67, 24660.
Saetra, Ø, Linders, T. and Debernard, J. (2008). Can polar lows lead to a warming of the ocean surface? Tellus, 60, 141–153.
Smirnova, J. E., Golubkin, P. A., Bobylev, L. P., Zabolotskikh, E. V. and Chapron, B. (2015). Polar low climatology over the Nordic and Barents seas based on satellite passive microwave data. Geophysical Research Letters, 42, 5603–5609.
Wang, G., Wu, L., Johnson, N. C. and Ling, Z. (2016). Observed three-dimensional structure of ocean cooling induced by Pacific tropical cyclones. Geophysical Research Letters, 43, 7632–7638.
Wilhelmsen, K. (1985). Climatological study of gale-producing polar lows near Norway. Tellus, Ser. A, 37, 451–459.
Zahn, M. and von Storch, H (2008). A long term climatology of North Atlantic polar lows. Geophysical Research Letters, 35, L22702.
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