Determining Parameters of Tbilisi's Winter Regime under Conditions of Climate Change and the Accuracy of their Determination
DOI:
https://doi.org/10.52340/ggj.2025.05.03.06Keywords:
Global climate, frosty days, winter regimeAbstract
This study examines the winter temperature regime of Tbilisi, Georgia, over the period 1881–2018 using four analytical approaches: difference, linear, cyclic, and non-linear approximations. Nine temperature-related parameters were analysed, their probability density distributions were calculated, and the performance of each method was evaluated. The results indicate a gradual warming trend in average frosty-day temperatures and cumulative frost-related indices, accompanied by a decrease in the number of frosty days. Absolute minimum temperatures increased by approximately 0.5 °C over an 87-year period. The study demonstrates the usefulness of applying multiple approximation methods for assessing regional climate trends, particularly in areas with limited data coverage.
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Bolashvili, N., Chikhladze, V., & Kartvelishvili, L. (2024). Variability of atmospheric precipitation in Tbilisi (1844–2023). In Proceedings of the International Conference “Complex Geophysical Monitoring in Georgia: History, Modern Problems, Promoting Sustainable Development of the Country” (pp. 150–154). Ivane Javakhishvili Tbilisi State University.
Mazmishvili, A. I. (1968). Method of least squares. Nedra. (In Russian)
Obukhov, A. M. (1960). On the statistical orthogonal expansion of empirical functions. Herald of the USSR Academy of Sciences: Geophysics, (3), 432–439. (In Russian)
Tavartkiladze, K. (2011). Extreme deviations in terrestrial temperature field variations and their connection with weather change (case study: Tbilisi). Proceedings of the Institute of Geography, (3), 39–45.
Tavartkiladze, K., & Bolashvili, N. (2022). Impact of global warming on the zero-degree isotherm of near-surface temperature. Georgian Geographical Journal, 2. https://doi.org/10.52340/ggj.2022.754
Tavartkiladze, K., & Kikava, A. (2010). Regime structure of temperature and precipitation contributing to droughts and desertification and the influence of climate change on it. Moambe of the Academy of Agriculture of Georgia, (28), 309–317.
Tavartkiladze, K., Begalishvili, N., Tsintsadze, T., & Kikava, A. (2012). Influence of global warming on the near-surface air temperature field in Georgia. Bulletin of the Georgian National Academy of Sciences, 6(3), 55–60.
Tavartkiladze, K., Bolashvili, N., Ananidze, M., Suknidze, N., & Chartolani, G. (2020). Climate change assessment using negative extreme deviations of surface temperature field (case study: Tbilisi). Open Journal of Geology, 10(5), 491–500. https://doi.org/10.4236/ojg.2020.105021
Tavartkiladze, K., Mumladze, D., & Bolashvili, N. (2019). Prediction of temperature regime of aridity on the example of Tbilisi. Bulletin of the Georgian National Academy of Sciences, 13(3). ISSN 0132-1447
Tavartkiladze, K., & Bolashvili, N. (2023). Parameters determining the winter regime of Tbilisi under warming conditions and the accuracy of their determination. Proceedings of the M. Nodia Institute of Geophysics. Ivane Javakhishvili Tbilisi State University. ISBN 978-9941-36-147-0
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