Climate Change in Sri Lanka's Central Province: A Comprehensive Analysis of Multiple Models Across Various Shared Socio-Economic Pathways

Authors

  • Piratheeparajah Nagamuthu University of Jaffna
  • Dhanushan K Department of Geography, University of Jaffna, Thirunelvely, Jaffna, 40000, Sri Lanka

DOI:

https://doi.org/10.36777/jag2025.4.1.2

Keywords:

Climate change, Temperature, Rainfall, Multi-models, Ensemble

Abstract

Climate change has emerged as a critical issue that demands the attention of global communities, becoming a primary concern for many nations. Sri Lanka's Central Province is particularly vulnerable to these shifts. This study aims to outline the expected patterns of temperature and rainfall in the Central Province under different climatic scenarios, using various models across diverse socio-economic pathways. The data for this analysis were obtained from the global coordination system established by the Coupled Model Intercomparison Project Phase 6. Utilizing carbon emission scenarios SSP2-4.5 and SSP5-8.5, a range of models were examined, and overarching conclusions were drawn using MiniTab 17 software. Under the SSP2-4.5 scenario, the consolidated results from the various models suggest that the average projected temperature for the Central Province from 2020 to 2100 will rise by 1.17°C, with May identified as the warmest month, experiencing a temperature increase of 1.33°C. Average rainfall is expected to increase by 105.56 mm, with November showing the most significant rise at 124.62 mm. In the context of the SSP5-8.5 scenario, the combined results indicate that the average temperature is projected to rise by 1.94°C during the same period, with May again exhibiting the highest temperature increase at 2.17°C. Average rainfall is expected to increase by 125.01 mm, with November encountering the greatest uplift at 184.77 mm. By understanding the projected temperature and rainfall changes in the Central Province, sustainable development in the region can be strengthened, thereby contributing to Sri Lanka's broader economic advancement.

References

Agonafir, C., Lakhankar, T., Khanbilvardi, R., Krakauer, N., Radell, D., Devineni, N., Gaurkhede, N. T., Adane, V. S., Shekhar, M. S., Gupta, P., Sharma, V., Nag, K., Paul, S., Saklani, D. R., Venkatramanan, V., Singh, G. P., Singh, A., Pakhale, G., Nale, J., … Sujatha, E. R. (2024). Land and atmospheric drivers of the 2023 flood in India. Climate, 12(10), 1–17. https://doi.org/10.1029/2024EA003750

Alahacoon, N., & Edirisinghe, M. (2021). Spatial variability of rainfall trends in Sri Lanka from 1989 to 2019 as an indication of climate change. ISPRS International Journal of Geo-Information, 10(2), Article 84. https://doi.org/10.3390/ijgi10020084

Arfasa, G. F., Owusu-Sekyere, E., & Doke, D. A. (2024). Climate change projections and impacts on future temperature, precipitation, and streamflow in the Vea catchment, Ghana. Environmental Challenges, 14, Article 100813. https://doi.org/10.1016/j.envc.2023.100813

Dananjaya, P. K. V. S., Shantha, A. A., & Patabendi, K. P. L. N. (2022). Impact of climate change and variability on paddy cultivation in Sri Lanka. Research Square. https://doi.org/10.21203/rs.3.rs-2149945/v1

Dasandara, S. P. M., Kulatunga, U., Ingirige, M. J. B., & Fernando, T. (2021). Climate change challenges facing Sri Lanka: A literature review. In Y. G. Sandanayake, S. Gunatilake, & K. G. A. S. Waidyasekara (Eds.), Proceedings of the 9th World Construction Symposium 2021 (pp. 183–195). https://doi.org/10.31705/WCS.2021.16

De Silva, M. M. G. T., & Kawasaki, A. (2018). Socioeconomic vulnerability to disaster risk: A case study of flood and drought impact in a rural Sri Lankan community. Ecological Economics, 152, 131–140. https://doi.org/10.1016/j.ecolecon.2018.05.010

Fernando, S., Bandara, J. S., & Smith, C. (2016). Tourism in Sri Lanka. In The Routledge handbook of tourism in Asia (pp. 251–264). Routledge. https://doi.org/10.4324/9781315768250

Fung, K. F., Huang, Y. F., & Koo, C. H. (2020). Assessing drought conditions through temporal pattern, spatial characteristic and operational accuracy indicated by SPI and SPEI: Case analysis for Peninsular Malaysia. Natural Hazards, 103(2), 2071–2101. https://doi.org/10.1007/s11069-020-04072-y

Grigorieva, E. A. (2024). Climate change and human health in the Arctic: A review. Climate, 12(7), Article 89. https://doi.org/10.3390/cli12070089

Jayawardena, C. P. G. (2012). Challenges of the plantation sector of the Central Province of Sri Lanka. Journal of Agricultural Research, 5(1), 34–45.

Kumar Guntu, R., & Agarwal, A. (2020). Investigation of precipitation variability and extremes using information theory. Environmental Sciences Proceedings, 4(1), Article 14. https://doi.org/10.3390/ecas2020-08115

Lescher Soto, I., Villamizar, A., Olivares, B. O., Gutiérrez, M. E., & Nagy, G. J. (2024). Navigating the uncertain terrain: Venezuela’s future using the Shared Socioeconomic Pathways framework: A systematic review. Climate, 12(7), Article 98. https://doi.org/10.3390/cli12070098

Li, J., Chen, X., Kurban, A., Van de Voorde, T., De Maeyer, P., & Zhang, C. (2021). Coupled SSPs-RCPs scenarios to project the future dynamic variations of water-soil-carbon-biodiversity services in Central Asia. Ecological Indicators, 129, Article 107936. https://doi.org/10.1016/j.ecolind.2021.107936

Lynas, M., Houlton, B. Z., & Perry, S. (2021). Greater than 99% consensus on human-caused climate change in the peer-reviewed scientific literature. Environmental Research Letters, 16(11), Article 114005. https://doi.org/10.1088/1748-9326/ac2966

Meegahakotuwa, U. S., & Rekha Nianthi, K. W. G. (2023). Environmental studies poster 258: Rainfall variations in Kandy District of Sri Lanka [Conference poster]. 2nd International Research Symposium, Uva Wellassa University.

Meinshausen, M., Nicholls, Z. R. J., Lewis, J., Gidden, M. J., Vogel, E., Freund, M., Beyerle, U., Gessner, C., Nauels, A., Bauer, N., Canadell, J. G., Daniel, J. S., John, A., Krummel, P. B., Luderer, G., Meinshausen, N., Montzka, S. A., Rayner, P. J., Reimann, S., … Wang, R. H. J. (2020). The shared socio-economic pathway (SSP) greenhouse gas concentrations and their extensions to 2500. Geoscientific Model Development, 13(8), 3571–3605. https://doi.org/10.5194/gmd-13-3571-2020

Nawarathna, R. B. N., Nianthi, K. W. G. R., & Subasinghe, S. I. S. (2023). Spatial and temporal variation of land surface temperature (LST) in the Kandy District of Sri Lanka. IOP Conference Series: Earth and Environmental Science, 1266(1), Article 012074. https://doi.org/10.1088/1755-1315/1266/1/012074

Perera, A., & Rathnayake, U. (2019). Rainfall and atmospheric temperature against the other climatic factors: A case study from Colombo, Sri Lanka. Mathematical Problems in Engineering, 2019, Article 5692753. https://doi.org/10.1155/2019/5692753

Qu, J. J., & Motha, R. P. (2022). Climate change and a sustainable Earth. Cambridge Scholars Publishing.

Senatilleke, U., Gunathilake, M. B., Alyousifi, Y., & Rathnayake, U. (2022). Analysis of recent trends and variability of temperature and relative humidity over Sri Lanka. MAUSAM, 73(3), 511–524. https://doi.org/10.54302/mausam.v73i3.3184

Sharma, A., Andhikaputra, G., & Wang, Y. C. (2022). Heatwaves in South Asia: Characterization, consequences on human health, and adaptation strategies. Atmosphere, 13(5), Article 734. https://doi.org/10.3390/atmos13050734

Silva, G. J. D., & Sonnadara, D. U. J. (2009). Climate change in the hill country of Sri Lanka. Proceedings of the Technical Sessions, 25, 7–12.

Somasundaram, D., Zhang, F., Ediriweera, S., Wang, S., Li, J., & Zhang, B. (2020). Spatial and temporal changes in surface water area of Sri Lanka over a 30-year period. Remote Sensing, 12(22), Article 3701. https://doi.org/10.3390/rs12223701

Wimalaratana, W. (2023). Cultural tourism potential in the Northwestern Province of Sri Lanka. Colombo Economic Journal, 1(1), 27–48.

Xiang, Y., Wang, Y., Chen, Y., & Zhang, Q. (2022). Impact of climate change on the hydrological regime of the Yarkant River Basin, China: An assessment using three SSP scenarios of CMIP6 GCMs. Remote Sensing, 14(1), Article 115. https://doi.org/10.3390/rs14010115

Downloads

Published

2025-03-30

How to Cite

Nagamuthu, P., & Dhanushan K. (2025). Climate Change in Sri Lanka’s Central Province: A Comprehensive Analysis of Multiple Models Across Various Shared Socio-Economic Pathways. Journal of Asian Geography, 4(1), 10-19. https://doi.org/10.36777/jag2025.4.1.2

Similar Articles

1-10 of 29

You may also start an advanced similarity search for this article.