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Improving Water Supply Capacity of Drainage Systems at Humid Areas in the Changing Climate Cover

Improving Water Supply Capacity of Drainage Systems at Humid Areas in the Changing Climate

Open Access
|Aug 2021

References

  1. Babich V., Dovbenko V., Kuzmych L., Dovbenko T. (2017) Estimation of flexures of the reinforced concrete elements according to the National Ukrainian & European standards, MATEC Web of Conferences, Vol. 116, 10 July 2017, Article number 02005.
  2. Conducting a spatial analysis of changes in the water regime of basins of surface water bodies in Ukraine due to climate change (2019) Final report on the results of research [Electronic resource] – Access mode: http://uhmi.org.ua/project/rvndr/avr.pdf.
  3. Datsko L. V. (2016) Modern agricultural use of lands of the humid zone of Ukraine, Reclamation and water management, 103, 41–47.
  4. Irrigation and drainage strategy in Ukraine for the period up to 2030 (2019) Approved by the Cabinet of Ministers of Ukraine, No. 688-r.
  5. Korobiichuk I., Drevetsky V., Kuzmych L., Kovela I. (2020) The method of multy-criteria parametric optimization, Advances in Intelligent Systems and Computing, 1140, Automation 2020: Towards Industry of the Future, 87–97, doi.org/10.1007/978-3-030-40971-5; available at: https://link.springer.com/chapter/10.1007/978-3-030-40971-5−9.10.1007/978-3-030-40971-5_9
  6. Korobiichuk I., Kuzmych L., Kvasnikov V. (2019) The system of the assessment of a residual resource of complex technical structures, MECHATRONICS 2019: Recent Advances Towards Industry 4.0, 350–357, https://doi.org/10.1007/978-3-030-29993-4−43.10.1007/978-3-030-29993-4
  7. Korobiichuk I., Kuzmych L., Kvasnikov V., Nowak P. (2017) The use of remote ground sensing data for assessment of environmental and crop conditions of the reclaimed land, Advances in Intelligent Systems and Computing (AISC), 550, ICA 2017: Automation 2017, 418–424, DOI: 10.1007/978-3-319-54042-9−39.10.1007/978-3-319-54042-9
  8. Land reclamation (systematics, prospects, innovations) (2015) Collective monograph (edited by S. A. Balyuk, M. I. Romashchenko, R. S. Truskavetskiy). Kherson: Grin D.S., 668 p.
  9. Recommendations for the use of water accumulation capacity of polder reclamation systems in the Transcarpathian region during floods and flooding of adjacent areas (2009) Report, No. of state register 0109U007893, K. 2009, IWPM Funds.
  10. Rokochinskiy A., Korobiichuk I., Kuzmych L., Volk P., Kuzmych A. (2020) The system optimization of technical, technological and construction parameters of polder systems, Advances in Intelligent Systems and Computing, 1140, Automation 2020: Towards Industry of the Future, 78–86, doi.org/10.1007/978-3-030-40971-5 – available at: https://link.springer.com/chapter/10.1007/978-3-030-40971-5−8.10.1007/978-3-030-40971-5_8
  11. Rokochinskiy A., Volk P., Kuzmych L., Turcheniuk V., Volk L., Dudnik A. (2019) Mathematical model of meteorological software for systematic flood control in the carpathian region, International Conference on Advanced Trends in Information Theory (ATIT), IEEE, 143–148.10.1109/ATIT49449.2019.9030455
  12. Romashchenko M. I., Husyev Yu. V., Shatkovskyi A. P., Saidak R. V., Yatsyuk M. V., Shevchenko A. M., Matiash T. V. (2020) The impact of modern climate change on water resources and agricultural production, Land reclamation and water management, 1, 5–22.10.31073/mivg202001-235
  13. Romashchenko M. I., Saidak R. V., Matiash T. V., Knysh V. V. (2019) Influence of climatic changes on moisture supply of the territory of Ukraine and production of agricultural products, “Water for All”: dedicated to World Water Day: International. scientific-practical Conference, thesis add., Kyiv 2019, 179–180.
  14. Romashchenko M. I. (2019a) Development of scenarios of climate change in Ukraine in the medium and long term using data from global and regional models, [Electronic resource], Access mode: http://uhmi.org.ua/project/rvndr/climate.pdf.
  15. Romashchenko M. I., (2019b) The impact of climate change on the state of Ukraine’s water resources, Proceedings of the International scientific-practical conference dedicated to the World Water Day (water for all), March 21, 2019, Kyiv, 11–12.
  16. Voropay G. V., Yatsyk M. V., Mozol N. V. (2019) Current state and prospects of development of drainage reclamation in the conditions of climate change, Reclamation and water management, 2, 31–39.10.31073/mivg201902-180
  17. Water Framework Directive 2000/60/EC (2000) https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=celex%3A32000L0060.
  18. Water Framework Directive review by the European Commission (2012) http://eur-lex.europa.eu/legal-content/EN/TXT/PDF/?uri=CELEX:52012DC0670&from=EN.
  19. Yatsyk M. V., Voropay G. V., Moleshcha N. B. (2016) Improving water supply of reclamation systems of the humid zone, Reclamation and water management, 103, 63–68.
  20. Yatsyk M. V., Voropay G. V., Topolnuk T. I., Shushkevich Yu. A. (2015) Methodological bases of increase of water supply of reclamation systems by creation of accumulating capacities, Land reclamation and water management, 102, 54–58.
DOI: https://doi.org/10.1515/heem-2021-0003 | Journal eISSN: 2300-8687 | Journal ISSN: 1231-3726
Language: English
Page range: 29 - 40
Submitted on: Apr 6, 2021
Accepted on: Jul 26, 2021
Published on: Aug 30, 2021
Published by: Polish Academy of Sciences, Institute of Hydro-Engineering
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2021 Lyudmyla Kuzmych, Galyna Voropay, Nelya Moleshcha, Olena Babitska, published by Polish Academy of Sciences, Institute of Hydro-Engineering
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.