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Original Articles

On the interpretation and classification of mesoscale cyclones from satellite infrared imagery

Pages 2457-2485 | Received 21 Jun 1994, Accepted 22 Feb 1995, Published online: 10 May 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Maxence Rojo, Chantal Claud, Paul-Etienne Mallet, Gunnar Noer, Andrew M. Carleton & Marie Vicomte. (2015) Polar low tracks over the Nordic Seas: a 14-winter climatic analysis. Tellus A: Dynamic Meteorology and Oceanography 67:1.
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C. Claud, B.M. Funatsu, G. Noer & J.-P. Chaboureau. (2009) Observation of polar lows by the Advanced Microwave Sounding Unit: potential and limitations. Tellus A: Dynamic Meteorology and Oceanography 61:2, pages 264-277.
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Andrew Russell, Glenn R. McGregor & Gareth J. Marshall. (2004) An examination of the precipitation delivery mechanisms for Dolleman Island, eastern Antarctic Peninsula. Tellus A: Dynamic Meteorology and Oceanography 56:5, pages 501-513.
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Yudong Song & AndrewM. Carleton. (1997) Climatological “models”; of cold air mesocyclones derived from SSM/I data. Geocarto International 12:1, pages 79-89.
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Articles from other publishers (22)

N. V. Vazaeva, O. G. Chkhetiani & E. A. Durneva. (2022) Criteria to Identify Polar Lows. Russian Meteorology and Hydrology 47:4, pages 262-271.
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Jianjun Xue, David H. Bromwich, Ziniu Xiao & Lesheng Bai. (2021) Impacts of initial conditions and model configuration on simulations of polar lows near Svalbard using Polar WRF with 3DVAR . Quarterly Journal of the Royal Meteorological Society 147:740, pages 3806-3834.
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N V Vazaeva, O G Chkhetiani & M V Kurgansky. (2020) On integral characteristics of Polar Lows. IOP Conference Series: Earth and Environmental Science 606:1, pages 012065.
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M Krinitskiy, P Verezemskaya, S Elizarov & S Gulev. (2020) Machine learning methods for the detection of polar lows in satellite mosaics: major issues and their solutions. IOP Conference Series: Earth and Environmental Science 606:1, pages 012025.
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C. Listowski, M. Rojo, C. Claud, J. Delanoë, J.‐F. Rysman, Q. Cazenave & G. Noer. (2020) New Insights Into the Vertical Structure of Clouds in Polar Lows, Using Radar‐Lidar Satellite Observations. Geophysical Research Letters 47:17.
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M. Rojo, C. Claud, G. Noer & A. M. Carleton. (2019) In Situ Measurements of Surface Winds, Waves, and Sea State in Polar Lows Over the North Atlantic. Journal of Geophysical Research: Atmospheres 124:2, pages 700-718.
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Mikhail Krinitskiy, Polina Verezemskaya, Kirill Grashchenkov, Natalia Tilinina, Sergey Gulev & Matthew Lazzara. (2018) Deep Convolutional Neural Networks Capabilities for Binary Classification of Polar Mesocyclones in Satellite Mosaics. Atmosphere 9:11, pages 426.
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Polina Verezemskaya, Natalia Tilinina, Sergey Gulev, Ian A. Renfrew & Matthew Lazzara. (2017) Southern Ocean mesocyclones and polar lows from manually tracked satellite mosaics. Geophysical Research Letters 44:15, pages 7985-7993.
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Damien Irving, Ian Simmonds & Kevin Keay. (2010) Mesoscale Cyclone Activity over the Ice-Free Southern Ocean: 1999–2008. Journal of Climate 23:20, pages 5404-5420.
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D Irving, I Simmonds & K Keay. (2010) Scatterometer-derived Southern Ocean mesoscale cyclone activity over the last decade. IOP Conference Series: Earth and Environmental Science 11, pages 012039.
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Chantal Claud, Andrew M. Carleton, Bertrand Duchiron & Pascal Terray. (2009) Atmospheric and upper ocean environments of Southern Ocean polar mesocyclones in the transition season months and associations with teleconnections. Journal of Geophysical Research: Atmospheres 114:D23.
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C. Claud, A. M. Carleton, B. Duchiron & P. Terray. (2008) Southern hemisphere winter cold-air mesocyclones: climatic environments and associations with teleconnections. Climate Dynamics 33:2-3, pages 383-408.
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Xiaojun Yuan, Jérôme Patoux & Cuihua Li. (2009) Satellite‐based midlatitude cyclone statistics over the Southern Ocean: 2. Tracks and surface fluxes. Journal of Geophysical Research: Atmospheres 114:D4.
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Thomas J. Bracegirdle & Suzanne L. Gray. (2008) An objective climatology of the dynamical forcing of polar lows in the Nordic seas. International Journal of Climatology 28:14, pages 1903-1919.
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Michel Petit, Antonio G. Ramos, Florence Lahet & Josep Coca. (2006) Satellite-Derived ERS scatterometer sea-surface wind-stress curl in the southwestern Indian Ocean. Comptes Rendus. Géoscience 338:3, pages 206-213.
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. 2009. Polar Lows. Polar Lows.
Andrew M. Carleton. (2003) Atmospheric teleconnections involving the Southern Ocean. Journal of Geophysical Research: Oceans 108:C4.
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John Turner, Gareth J. Marshall & Thomas A. Lachlan-Cope. (1998) Analysis of synoptic-scale low pressure systems within the Antarctic Peninsula sector of the circumpolar trough. International Journal of Climatology 18:3, pages 253-280.
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Lynn A. McMurdie, Chantal Claud & Serhad Atakturk. (1997) Satellite‐derived atmospheric characteristics of spiral and comma‐shaped southern hemisphere mesocyclones. Journal of Geophysical Research: Atmospheres 102:D12, pages 13889-13905.
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Gareth J. Marshall & John Turner. (1997) Surface wind fields of Antarctic mesocyclones derived from ERS 1 scatterometer data. Journal of Geophysical Research: Atmospheres 102:D12, pages 13907-13921.
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Andrew M. Carleton & Yudong Song. (1997) Synoptic climatology, and intrahemispheric associations, of cold air mesocyclones in the Australasian sector. Journal of Geophysical Research: Atmospheres 102:D12, pages 13873-13887.
Crossref
D. A. HUDSON & B. C. HEWITSON. (1997) MID-LATITUDE CYCLONES SOUTH OF AFRICA IN THE GENESIS GCM. International Journal of Climatology 17:5, pages 459-473.
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