Open Access
Issue
E3S Web Conf.
Volume 563, 2024
International Conference on Environmental Science, Technology and Engineering (ICESTE 2024)
Article Number 03061
Number of page(s) 11
Section Green Environment
DOI https://doi.org/10.1051/e3sconf/202456303061
Published online 30 August 2024
  1. UNDP. Building a Resilient Future: Restoring high-value arid ecosystems in the Lower Amu Darya Basin, New York (2023) [Google Scholar]
  2. Q. Wang, H. Deng, J. Jian, Hydrological Processes under Climate Change and Human Activities: Status and Challenges. Water 15, 4164 (2023) [CrossRef] [Google Scholar]
  3. Z.A. Mani, K. Goniewicz, Adapting Disaster Preparedness Strategies to Changing Climate Patterns in Saudi Arabia: A Rapid Review. Sustainability 15, 14279 (2023) [CrossRef] [Google Scholar]
  4. V.D. Banda, R.B. Dzwairo, S.K. Singh, T. Kanyerere, Hydrological Modelling and Climate Adaptation under Changing Climate: A Review with a Focus in Sub-Saharan Africa. Water 14, 4031 (2022) [CrossRef] [Google Scholar]
  5. UNEP, ENVSEC, GRID Arendal and Zoi Environment Network. Environment and Security in Amu Darya basin. Report (2011) [Google Scholar]
  6. M. Bekchanov, J.P. Lamers, A. Martius, C. Pros and Cons of Adopting Water-Wise Approaches in the Lower Reaches of the Amu Darya: A Socio-Economic View. Water 2, 200-216 (2010) [CrossRef] [Google Scholar]
  7. E. Lioubimtseva, J. Kariyeva, G.M. Henebry. Climate Change in Turkmenistan. The Handbook of Environmental Chemistry 28. Springer, Berlin, Heidelberg (2012) [Google Scholar]
  8. Chuhan Lu, Yumin Zhang, Zhaoyong Guan. Winter anticyclone activities in Siberia and their relationship to the regional temperature anomaly. International Journal of Climatology, 2022. [Google Scholar]
  9. World Bank Climate Change Portal. Turkmenistan-Climatology-Climate Change Knowledge Portal. [Google Scholar]
  10. B. Kholmatjanov, Y.V. Petrov, T. Khujanazarov, N.N. Sulaymonova, Analysis of Temperature Change in Uzbekistan and the Regional Atmospheric Circulation of Middle Asia during 1961-2016, Climate 8(9), 101 (2020) [CrossRef] [Google Scholar]
  11. UNDP, National Climate Change Strategy of Turkmenistan, Ashkhabad (2022) [Google Scholar]
  12. O. Salehie, Tb. Ismail, S. Shahid, M.M. Hamed, P. Chinnasamy, X. Wang, Assessment of Water Resources Availability in Amu Darya River Basin Using GRACE Data, Water 14(4), 533 (2022) [CrossRef] [Google Scholar]
  13. A. Khodjiev. Impact Assessment of climate change on water resources of the Amu Darya River basin. E3S Web of Conferences 376, 02010 (2023) [CrossRef] [EDP Sciences] [Google Scholar]
  14. O. Salehie, T. Ismail, S. Shahid, M.M. Hamed, P. Chinnasamy, X. Wang, Assessment of Water Resources Availability in Amu Darya River Basin Using GRACE Data. Water 14, 533 (2022) [CrossRef] [Google Scholar]
  15. Andrew Hoell, Jon Eischeid, Mathew Barlow, Amy McNally. Characteristics, precursors, and potential predictability of Amu Darya Drought in an Earth system model large ensemble. Climate Dynamics (2020) [Google Scholar]
  16. Lingang Hao, Ping Wang, Boris Gojenko, Jingjie Yu. Five decades of freshwater salinization in the Amu Darya River basin. Journal of Hydrology, Regional Studies 47(1), 101375 (2023) [CrossRef] [Google Scholar]
  17. Moshir Panahi D, Kalantari Z, Ghajarnia N, Seifollahi-Aghmiuni S, Destouni G. Variability and change in the hydro-climate and water resources of Iran over a recent 30-year period. Sci Rep. 10(1), 7450 (2020) [CrossRef] [Google Scholar]
  18. M. Demuzere, M. Werner, N. P. M. van Lipzigaand, E. Roeckner. An analysis of present and future ECHAM5 pressure fields using a classification of circulation patterns. International Journal of Climatology (2009) [Google Scholar]
  19. S.K. Singh, S. Kanga, B. Gulati, M. Raič, B. Sajan, B. Đurin, S. Singh, Spatial and Temporal Analysis of Hydrological Modelling in the Beas Basin Using SWAT+ Model. Water 15, 3338 (2023) [CrossRef] [Google Scholar]
  20. E. Xu, X. Ren, I.D. Amoah, C.A. Mecha, K.E. Scriber, R. Wang, J. Zhao, Climate-Driven Dynamics of Runoff in the Dayekou Basin: A Comprehensive Analysis of Temperature, Precipitation, and Anthropogenic Influences over a 25-Year Period. Water 16, 919 (2024) [CrossRef] [Google Scholar]
  21. USAID. Partnerships for Enhanced Engagement in Research (PEER) [Google Scholar]

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