Academic literature on the topic 'Cyclone Tauktae'

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Journal articles on the topic "Cyclone Tauktae"

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Keriwala, Neha, and Anant Patel. "Impact Assessment of Tropical Cyclone Tauktae on Coastal Region of Gujarat, India." ECS Transactions 107, no. 1 (2022): 6185–95. http://dx.doi.org/10.1149/10701.6185ecst.

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Tropical cyclones are among the most destructive forces on the globe, and their powerful winds, high devastating storm surges, and major flooding are all capable of causing widespread devastation. A sudden intensification to a severe cyclonic storm occurred when Tauktae began to parallel the coasts of the Indian states of Kerala, Karnataka, Goa, Maharashtra, and Gujarat. Tauktae made landfall on May 17, 2021 in Diu, Gujarat. This article incorporates an overview of effect on severely impacted area in the Gujarat due to Tauktae. Around 64 people died in Gujarat as a result of the devastating Ta
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Adhikari, Niranjan, Jing Gao, Aibin Zhao, et al. "Spring tropical cyclones modulate near-surface isotopic compositions of atmospheric water vapour in Kathmandu, Nepal." Atmospheric Chemistry and Physics 24, no. 5 (2024): 3279–96. http://dx.doi.org/10.5194/acp-24-3279-2024.

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Abstract. While westerlies are recognized as a significant moisture transport in Nepal during the pre-monsoon season, precipitation is also attributed to moisture from cyclones originating in the Bay of Bengal (BoB) or the Arabian Sea (AS). Tropical cyclones exhibit negative isotopic values in both precipitation and atmospheric water vapour; however, the factors influencing isotopic fractionation during tropical cyclones remain poorly understood. We present the results of continuous measurements of the isotopic composition of atmospheric water vapour (δ18Ov, δDv, and d-excessv) in Kathmandu fr
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D. P, Poojith K., Somashekhara ., and Dasharatha P. Angadi. "Assessing the impact of cyclonic storm Tauktae on shoreline change in Mangaluru coast using geospatial technology." Scientific Temper 15, no. 01 (2024): 1685–88. http://dx.doi.org/10.58414/scientifictemper.2024.15.1.16.

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Cyclones are natural events that occur with atmospheric pressure variations. Compared to the eastern coast of India, the western coast has less cyclonic activity. Even though some of the cyclonic events turn into severe cyclonic storms and cause a huge impact on ecological and anthropogenic activities. This research focuses on the impact of cyclone Tauktae on the Mangalore coast. Cyclone Tauktae, one of the most powerful to pass through coastal Karnataka, caused significant damages, affecting 121 villages and resulting in four casualties. Utilizing geospatial techniques, this study employs Sen
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M, A. Sarker (PhD). "Numerical Modelling of Waves and Surge from Cyclone Tauktae (2021) in the Arabian Sea." European Journal of Advances in Engineering and Technology 10, no. 6 (2023): 8–16. https://doi.org/10.5281/zenodo.10636871.

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<strong>ABSTRACT </strong> The extremely severe Cyclone Tauktae (14-19 May 2021) was a powerful, deadly and damaging tropical cyclone in the Arabian Sea that became the strongest tropical cyclone to make landfall in the Indian state of Gujarat since the 1998 Gujarat cyclone. It was one of the strongest tropical cyclones to ever affect the west coast of India. Due to the immense strength of the storm, the west coast of India was affected by strong winds, high storm surges and heavy rainfalls causing loss of life and damage to properties. This paper has concentrated on this event to illustrate t
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Yadav, Monu, and Laxminarayan Das. "Detecting Tropical Cyclone from the basic overview of life cycle of Extremely Severe Cyclonic Storm, Tauktae." Revista de Climatología 23 (December 26, 2023): 149–56. http://dx.doi.org/10.59427/rcli/2023/v23.149-156.

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The Extremely Severe Cyclonic Storm (ESCS) Tauktae, which made landfall on the Gujarat coast on May 17, 2021, is discussed in the current study. The analysis is based on INSAT-3D and passive microwave (PMW) images, fo-cusing on the cyclone’s eye characteristics and intensity. The satellite imag-es and products are utilized to determine the cyclone's intensity and the spe-cific characteristics of its eye. The study showcases the variations in intensi-ty and eye features of the cyclone throughout its life span, providing insights into the process of tropical cyclone intensification. The paper is
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Shanas, P. R., V. Sanil Kumar, Jesbin George, Duphrin Joseph, and Jai Singh. "Observations of surface wave fields in the Arabian Sea under tropical cyclone Tauktae." Ocean Engineering 242 (December 2021): 110097. http://dx.doi.org/10.1016/j.oceaneng.2021.110097.

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Nitish Raj Rathaur, Amarendra Singh, and Prabhat Kumar Patel. "Analysis of major cyclone storms ‘mocha 2023’, ‘Mandous 2022’ of recent years over India." World Journal of Advanced Research and Reviews 19, no. 3 (2023): 1287–97. http://dx.doi.org/10.30574/wjarr.2023.19.3.1929.

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The current study outlines how ocean conditions contributed to the development, intensification and dissipation of the extremely severe cyclonic storms “Mocha” (ESCS) (2023), severe cyclonic storm (SCS) “Mandous” (2022), very severe cyclonic storm (VSCS) “Asani” (2022), and (ESCS) “Tauktae” (2021). ‘Mocha’ tropical cyclones (TC) formed over warm waters over the southeast Bay of Bengal and the adjacent northern Andaman Sea on May 11–12, 2023, ‘Mandous’ over the southeast Bay of Bengal on December 6-7, 2022. The European Centre for Medium-Range Weather Forecasts (ECMWF) generated ECMWF reanalysi
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Nitish, Raj Rathaur, Singh Amarendra, and Kumar Patel Prabhat. "Analysis of major cyclone storms 'mocha 2023', 'Mandous 2022' of recent years over India." World Journal of Advanced Research and Reviews 19, no. 3 (2023): 1284–86. https://doi.org/10.5281/zenodo.12049100.

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The current study outlines how ocean conditions contributed to the development, intensification and dissipation of the extremely severe cyclonic storms &ldquo;Mocha&rdquo; (ESCS) (2023), severe cyclonic storm (SCS) &ldquo;Mandous&rdquo; (2022), very severe cyclonic storm (VSCS) &ldquo;Asani&rdquo; (2022), and (ESCS) &ldquo;Tauktae&rdquo; (2021). &lsquo;Mocha&rsquo; tropical cyclones (TC) formed over warm waters over the southeast Bay of Bengal and the adjacent northern Andaman Sea on May 11&ndash;12, 2023, &lsquo;Mandous&rsquo; over the southeast Bay of Bengal on December 6-7, 2022. The Europe
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Ramakrishna Phani Pammi, Et al. "Decision Support Systems for Coastal Resilience: The Role of Early Warning Systems and Validation." International Journal on Recent and Innovation Trends in Computing and Communication 11, no. 9 (2023): 1232–39. http://dx.doi.org/10.17762/ijritcc.v11i9.9039.

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This study presents an advanced Integrated Ocean Forecast Decision Support System (DSS) crafted to elevate ocean forecasting capabilities and enable well-informed decision-making, with a specific focus on the Indian Ocean region. The DSS has a visualization module for scientific inference and spatial analysis. It also has a validation component where each weather model is checked against observations from coastal buoys, open ocean buoys, and ASCAT and SCATSAT satellite data. The system integrates the operational forecasts and observation data and automatically informs the users of the best-cor
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Umakanth, Nandivada, Prathipati Vinay Kumar, Rupraj Biswasharma, Rajesh Gogineni, Shaik Hasane Ahammad, and Myla Chimpiri Rao. "Association of Mesoscale Features With Tropical Cyclone Tauktae." Thalassas: An International Journal of Marine Sciences, July 4, 2024. http://dx.doi.org/10.1007/s41208-024-00740-z.

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Book chapters on the topic "Cyclone Tauktae"

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Rajendiran, S., Jaya Kumar Seelam, Raghavendra Talawar, et al. "Morphological Response of Sandy Beaches to Tauktae Cyclone in Goa, West Coast of India." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-19-9913-0_21.

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Conference papers on the topic "Cyclone Tauktae"

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Nagamani, K., Anoop Kumar Mishra, Mohammad Suhail Meer, and B. Anuradha. "Mapping Severe Tropical Cyclone Tauktae Across the Arabian Sea and Western Coast of India Using Remote Sensing and Machine Learning During May 2021." In 2023 International Conference on Data Science, Agents & Artificial Intelligence (ICDSAAI). IEEE, 2023. http://dx.doi.org/10.1109/icdsaai59313.2023.10452623.

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Saharan, Suniti, and Ajeet K. Maurya. "Lower ionospheric response during cyclone Taukate inferred using very low frequency signals." In 6th URSI Regional Conference on Radio Science. URSI – International Union of Radio Science, 2024. https://doi.org/10.46620/ursi_rsrc24/0091xsr1621.

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