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Governing Factors Associated with Intensification of TC-A Diagnostic Study of VSCS PHAILIN and LEHAR

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Tropical Cyclone Activity over the North Indian Ocean
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Abstract

Tropical cyclones (TCs) are synoptic scale intense low pressure systems which form over the warm tropical oceans characterised by strong cyclonic winds and organised convection with heavy rainfall. The TC causes enormous damage to life and property at the time of crossing the coast and subsequent movement over the land. The TCs can impact over a wide area with its strong winds, heavy rains and storm surges. Gray (Hurricanes: their formation structure and likely role in the tropical circulation. In: Shaw DB (ed) Meteorology over the Tropical Oceans. Royal Meteorological Society, Bracknell, pp 155–218,1979) prepared a detailed climatology of the TCs in the global ocean basins. He observed that annually about 80 TCs form globally of which half to two thirds reach hurricane strength (maximum sustained winds greater than 33 m/s). East coast of India is frequently affected by TCs that form over Bay of Bengal (Tyagi et al., Inter-annual variation of frequency of cyclonic disturbances landfalling over WMO/ESCAP Panel Member Countries. WMO/TD-No. 1541 on 1st WMO International conference on Indian Ocean tropical cyclones and climate change, Muscat, Sultanate of Oman, 8–11 March 2009, WWRP-2010/2, 2010). During the period 1891–2010, about 134 severe TCs crossed the east coast of India (IMD, Cyclone e-Atlas-IMD tracks of cyclones and depressions over North Indian Ocean. www.rmcchennaieatlas.tn.nic.in, 2011; Atlas of storm track). Anthes (Tropical cyclones: their evolution, structure and effects. Meteorological Monographs, American Meteorological Society, Boston, 1982) has extensively studied the three dimensional structure of TC. He observed that the surface pressure is lowest at the centre of the TC and increases outward. The wind speed reaches its maximum value at nearly 40–80 km from the centre beyond which it decreases. The central parts are warmer than the surroundings and the temperature anomaly could be more than 10° K at the upper troposphere. The TC grows upto a height of 10–15 km. Intense TCs frequently develop an eye, which is a cloud free region at the centre of the storm characterised by the presence of subsidence.

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References

  • Anthes, R.A. (1982). Tropical Cyclones: Their Evolution, structure and effects. Meteorological Monographs, American Meteorological Society.

    Google Scholar 

  • Chan, J.C.L. (1995). Prediction of annual TC activity over the Western North Pacific and the South China Sea. International Journal of Climatology, 15, 1011–1019.

    Article  Google Scholar 

  • Das, G.K, Midya, S.K, Debnath, G.C. and Roy, S.N. (2012). The relationship between geopotential height and movement & landfall of TC over the Bay of Bengal. Mausam, 63, 469–474.

    Google Scholar 

  • Ginis, I. (1995). Interaction of TCs with the ocean. Global Perspectives on TCs. In: Elsberry, R.L. (ed.) Tech. Doc. WMO/TD No. 693, Chapter 5, World Meteorological Organization, Geneva, Switzerland, pp. 198–260.

    Google Scholar 

  • Gray, W.M. (1979). Hurricanes: Their formation structure and likely role in the tropical circulation. In: Shaw D.B. (ed.) Meteorology over the Tropical Oceans. Royal Meteorological Society, pp. 155–218.

    Google Scholar 

  • Gray, W.M. (1984). Atlantic seasonal hurricane frequency. Part I: El Niño and 30 mb quasi-biennial oscillation influences. Monthly Weather Review, 112, 1649–1668.

    Article  Google Scholar 

  • IMD (2011). Cyclone e-Atlas-IMD Tracks of Cyclones and Depressions over North Indian Ocean (www.rmcchennaieatlas.tn.nic.in).

  • Holland, G.J. (1997). The maximum potential intensity of TCs. Journal of the Atmospheric Sciences, 54, 2519–2541.

    Article  Google Scholar 

  • Kotal, S.D. and Roy Bhowmik, S.K. (2013). Large-scale characteristics of rapidly intensifying TCs over the Bay of Bengal and a Rapid Intensification (RI) index. Mausam, 64, 13–24.

    Google Scholar 

  • Krishna Rao, A.V.R. (1997). TCs-synoptic methods of forecasting. Mausam, 48, 239–256.

    Google Scholar 

  • Mandal, G.S. (1991). TCs and their forecasting and Warning System in the north Indian Ocean. WMO/TD No.430, Report No. TCP-28.

    Google Scholar 

  • Mohapatra, M, Bandyopadhyay, B.K, Nayak, D.P. (2013a). Evaluation of operational tropical cyclone intensity forecasts over north Indian Ocean issued by India Meteorological Department. Natural Hazards, 68, 589–601, doi:10.1007/s11069-013-0624-z

  • Mohapatra, M, Bandyopadhyay, B.K. and Tyagi, A. (2013b). Constraction and Quality of Best Track Parameters for study of Climate Change Impact on Tropical Cyclones over the North Indian Ocean during satellite era. published in Monitoring and Prtediction of Tropical Cyclones in the North Indian Ocean, Copublished by Springer & Capital Publishing Company, pp. 3–15.

    Google Scholar 

  • Muthuchami, A. (2000). Origin and movement of cyclonic storms in the Bay of Bengal. Mausam, 51, 225–230.

    Google Scholar 

  • Muthuchami, A. and Sridharan, S. (2008). Intensification and movement of cyclonic storms in the Bay of Bengal during post monsoon season. Mausam, 59, 51–68.

    Google Scholar 

  • Palmen, E. (1948). On the formation and structure of tropical hurricanes. Geophysica, 3, 26–38.

    Google Scholar 

  • Patwardhan, S.K. and Bhalme, H.N. (2001). A study of cyclonic disturbances in India and the adjacent ocean. International Journal of Climatology, 2 1, 527–534.

    Google Scholar 

  • RSMC, New Delhi, 2014, Report Cyclonic Disturbances over north Indian Ocean during 2013. RSMC, New Delhi.

    Google Scholar 

  • Schade, L.R. (2000). TC intensity and sea surface temperature. Journal of Atmospheric Sciences, 57, 3122–3130.

    Article  Google Scholar 

  • Tyagi, A, Mohapatra, M, Bandyopadhyay, B.K. and Naresh Kumar (2010). Inter-annual variation of frequency of cyclonic disturbances landfalling over WMO/ESCAP Panel Member Countries. WMO/TD-No. 1541 on 1st WMO International conference on Indian Ocean Tropical Cyclones and Climate Change, Muscat, Sultanate of Oman 08–11 March, 2009, WWRP-2010/2.

    Google Scholar 

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Correspondence to G. C. Debnath .

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Das, G.K., Debnath, G.C. (2017). Governing Factors Associated with Intensification of TC-A Diagnostic Study of VSCS PHAILIN and LEHAR. In: Mohapatra, M., Bandyopadhyay, B., Rathore, L. (eds) Tropical Cyclone Activity over the North Indian Ocean. Springer, Cham. https://doi.org/10.1007/978-3-319-40576-6_17

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