Contrasting Chl-a responses to the tropical cyclones Thane and Phailin in the Bay of Bengal

Satellite-derived ocean colour data was used to identify the phytoplankton bloom associated with tropical cyclones Thane and Phailin in the Bay of Bengal (BoB). Cyclone Thane was category 2 cyclone (25–31 December 2011), and Phailin was category 5 cyclone (8–14 October 2013), and both occurred durin...

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Veröffentlicht in:Journal of marine systems 2017-01, Vol.165, p.103-114
Hauptverfasser: P.J., Vidya, Das, Santosh, Murali.R, Mani
Format: Artikel
Sprache:eng
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Zusammenfassung:Satellite-derived ocean colour data was used to identify the phytoplankton bloom associated with tropical cyclones Thane and Phailin in the Bay of Bengal (BoB). Cyclone Thane was category 2 cyclone (25–31 December 2011), and Phailin was category 5 cyclone (8–14 October 2013), and both occurred during the post-monsoon season. The present study examined the effect of cyclone intensity difference on the chlorophyll a (Chl-a) production in the BoB. Two and seven times Chl-a enhancement was observed after the passage of Phailin and Thane respectively. Possible causes were examined using the satellite-derived sea surface temperature, sea surface height anomalies and sea surface winds. In both cases, cyclone intensified the strength of the pre-existing cyclonic eddies after its passage. Our study shows that the strong stratification along the Phailin track suppresses the Chl-a enhancement after its passage. However, comparatively weaker stratification along the Thane track promotes entrainment of more nutrients and enhances the Chl-a production even though with lesser intensity. In this study, the extent of Chl-a production associated with cyclones was attributed to upper ocean physical processes than the intensity. •First comparative study of cyclone intensity and Chl-a production in the BoB•Cyclone induced the intensity of the cyclonic eddy after its passage.•Strong stratification in the northern Bay impacts the Chl-a bloom after cyclone.
ISSN:0924-7963
1879-1573
DOI:10.1016/j.jmarsys.2016.10.001