Have a personal or library account? Click to login
Scenarios for the Functioning of the Kakhovka Reservoir Territory Cover

Scenarios for the Functioning of the Kakhovka Reservoir Territory

Open Access
|May 2025

References

  1. Ashok, A., Rani, H.P. & Jayakumar, K.V. (2021). Monitoring of dynamic wetland changes using NDVI and NDWI based landsat imagery. Remote Sensing Applications: Society and Environment. 23, 100547. DOI: 10.1016/j.rsase.2021.100547
  2. Dash, J., Vuolo, F. & Lavender, S. (2010). Algorithm Theoretical Basis Document for OLCI Terrestrial Chlorophyll Index (OTCI). Sentinel-3 L2 products and algorithm definition. University of Southampton. Document Number: S3-L2-SD-03-C14-UoS-ATBD_OTCI, 2, 1-21.
  3. Dovhanenko, D.О., Yakovenko, V.M., Brygadyrenko, V.V. & Boyko, O.O. (2024). Characteristic of the dried-up zone formed as a result of the breach of the Kahovka dam. Biosystems Diversity. 32(2), 285-295. DOI: 10.15421/012431
  4. Hapich, H. & Onopriienko, D. (2024b). Ecology and economics of irrigation in the south of Ukraine following destruction of the Kakhov reservoir. International Journal of Environmental Studies. DOI: 10.1080/00207233.2024.2314859
  5. Hapich, H., Zahrytsenko, A., Sudakov, A., Pavlychenko, A., Yurchenko, S., Sudakova, D. & Chushkina, I. (2024a). Prospects of alternative water supply for the population of Ukraine during wartime and post-war reconstruction. International Journal of Environmental Studies. DOI: 10.1080/00207233.2023.2296781
  6. Hu, P., Zheng, B., Chen, Q., Grunefeld, S., Choudhury, M.R., Fernandez, J., Potgieter, A. & Chapman, S.C. (2024). Estimating aboveground biomass dynamics of wheat at small spatial scale by integrating crop growth and radiative transfer models with satellite remote sensing data. Remote Sensing of Environment. 311, 114277. DOI: https://doi.org/10.1016/j.rse.2024.114277
  7. Khorev, M. (2023). How will we cover the water deficit from the Kakhovka reservoir? Ecopolitic. Retrieved September 24, 2024, from: https://ecopolitic.com.ua/ua/comments/chim-budemo-perekrivati-deficit-vodi-z-kahovskogo-vodoshovishha/.
  8. Kuzemko, A., Prylutskyi, O., Kolomytsev, G., Didukh, Y., Moysiyenko, I., Borsukevych, L., Chusova, O., Splodytel, A. & Khodosovtsev, O. (2024). Reach the bottom: plant cover of the former Kakhovka Reservoir, Ukraine. Research Square. DOI: 10.21203/rs.3.rs-4137799/v1
  9. Li, Z. L., Wu, H., Duan, S. B., Zhao, W., Ren, H., Liu, X. & Zhou, C. (2023). Satellite remote sensing of global land surface temperature: Definition, methods, products, and applications. Reviews of Geophysics. 61(1), e2022RG000777. DOI: https://doi.org/10.1029/2022RG000777
  10. Narissara, N., Worradorn, P., Pramaditya, W. & Tri, S. (2018). Estimating Aboveground Biomass on Private Forest Using Sentinel-2 Imagery. Journal of Sensors. DOI: https://doi.org/10.1155/2018/6745629
  11. Nurjaya, I.W., Surbakti, H. & Natih, N.M.N. (2019). Model of Total Suspended Solid (TSS) distribution due to coastal mining in Western Coast of Kundur Island part of Berhala Strait Model of Total Suspended Solid (TSS) distribution due to coastal mining in Western Coast of Kundur Island part of Berhala Strait. IOP Conference Series Earth and Environmental Science. 278, 1-17. DOI: 10.1088/1755-1315/278/1/012056
  12. Peppa, M., Vasilakos, Ch. & Kavroudakis, D. (2020). Eutrophication monitoring for Lake Pamvotis, Greece, using Sentinel-2 Data. ISPRS International Journal of Geo-Information. 9 (3), 143. DOI: 10.3390/ijgi9030143
  13. Pichura, V.I., Potravka, L.A., Skrypchuk, P.M. & Stratichuk, N.V. (2020). Anthropogenic and climatic causality of changes in the hydrological regime of the Dnieper river. Journal of Ecological Engineering. 21 (4). P. 1-10. DOI: https://doi.org/10.12911/22998993/119521
  14. Pichura, V., Potravka, L., Dudiak, N. & Bahinskyi, O. (2024a). Natural and climatic transformation of the Kakhovka Reservoir after the destruction of the dam. Journal of Ecological Engineering. 25 (7), 82-104. DOI: https://doi.org/10.12911/22998993/187961
  15. Pichura, V., Potravka, L., Dudiak, N. & Hyrlya, L. (2024b). The impact of the russian armed aggression on the condition of the water area of the Dnipro-Buh estuary system. Ecological Engineering & Environmental Technology. 25(11), 58-82. DOI: https://doi.org/10.12912/27197050/192154
  16. Pichura, V.I., Malchykova, D.S., Ukrainskij, P.A., Shakhman, I.A. & Bystriantseva, A.N. (2018). Anthropogenic Transformation of Hydrological Regime of the Dnieper River. Indian Journal of Ecology. 45 (3), 445-453.
  17. Romanenko, V., Zhulynsjkyj, V., Oksijuk, O., & Yacyk, A. (1998). Methodology of ecological assessment of surface water quality by relevant categories. Кyiv: Symvol-T. 28, 9. (Ukrainian)
  18. Snizhko, S., Didovets, I., Bronstert, A. (2024). Ukraine’s water security under pressure: Climate change and wartime. Water Security. 23. DOI: 10.1016/j.wasec.2024.100182
  19. Vasyliuk O., Parkhomenko V., Moysiyenko I., Shapoval V., Panchenko S. & Spriahailo O. & Symonov Y. (2023). The revival of the Velykyi Luh (Great Meadow) offers greater economic, social, and environmental benefits than the restoration of the reservoir. A thorough study. TEXTY.ORG.UA https://texty.org.ua/fragments/110451/vidrodzhennya-velykoho-luhu-daye-bilshi-ekonomichni-socialni-ta-ekolohichni-perevahy-nizh-vidnovlennya-vodoshovysha-gr untovne-doslidzhennya/ [in Ukrainian]
  20. Vyshnevskyi, V. & Shevchuk S. (2024a). The destruction of the Kakhovka dam and the future of the Kakhovske reservoir. International Journal of Environmental Studies. DOI: 10.1080/00207233.2024.2320033
  21. Vyshnevskyi, V., Shevchuk, S., Komorin, V., Oleynik, Yu. & Gleick, P. (2023) The destruction of the Kakhovka dam and its consequences. Water International. DOI: 10.1080/02508060.2023.2247679
  22. Vyshnevskyi, V.I. & Shevchuk, S.A. (2024b). Natural Processes in the Area of the Former Kakhovske Reservoir After the Destruction of the Kakhovka HPP. Journal of Landscape Ecology. 17 (2), 147-164. DOI: https://doi.org/10.2478/jlecol-2024-0014
  23. Zhan, Y., Delegido, J., Erena, M., Soria, J.M., Ruiz-Verdú, A., Urrego, P., Sòria-Perpinyà, X., Vicente, E. & Moreno, J. (2022). Mar Menor lagoon (SE Spain) chlorophyll-a and turbidity estimation with Sentinel-2. Limnetica. 41 (1). DOI: 10.23818/limn.41.18
DOI: https://doi.org/10.2478/jlecol-2025-0023 | Journal eISSN: 1805-4196 | Journal ISSN: 1803-2427
Language: English
Page range: 118 - 154
Submitted on: Jan 23, 2025
Accepted on: Apr 22, 2025
Published on: May 26, 2025
Published by: Czech Society for Landscape Ecology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Vitalii Pichura, Larysa Potravka, Nataliia Stoiko, Halyna Dudych, published by Czech Society for Landscape Ecology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.