Peer-reviewed articles 17,970 +



Title: WATER MANAGEMENT TO REDUCE FLOODS IN THE HYDROGRAPHIC BASIN BEGA-TIMI?

WATER MANAGEMENT TO REDUCE FLOODS IN THE HYDROGRAPHIC BASIN BEGA-TIMI?
Laura ?muleac; Hortensia Radulescu; Florin Imbrea; Adrian ?muleac; Raul Pascalau
10.5593/sgem2022V/3.2
1314-2704
English
22
3.2
•    Prof. DSc. Oleksandr Trofymchuk, UKRAINE 
•    Prof. Dr. hab. oec. Baiba Rivza, LATVIA
The climate change facing humanity requires two major and immediate solutions: the need to drastically reduce greenhouse gas emissions on the one hand, and on the other hand the need to adapt to the effects of climate change, given that these effects are already visible and unavoidable due to the inertia of the climate system. Romania is vulnerable to a number of natural climate and geological dangers: floods, droughts, extreme temperatures, the western part of the country registering over time some devastating floods, which caused numerous losses of life and economic losses, such as the flooding with a historical maximum in year 2005. Water being an important resource in people's lives, it is necessary for this resource to be properly managed, as poor water resource management can cause great damage. In the present paper is analyzed the Costei Hydrotechnical Node, which is distinguished by the efficiency of the management of the water flows from the Timis River as well as by the flow regulation on the Bega River. For the efficient management of water resources, water flows and levels were analyzed between 2017-2021, noting that in 2020 it was surplus, and in 2021, the lowest value for water levels and annual flow rates. This indicates a fluctuating nature of the water flow resulting from the global anthropogenic impact on the environment.
[1] Gurung P., Dhungana S., Kyaw K., Bharati L. Hydrologic characterization of the Upper Ayeyarwaddy River Basin and the impact of climate change. Journal of Water and Climate Change, 13(7):2577-2596, 2022.
[2] Akhtar F., Borgemeister C., Tischbein B., Awan U. Metrics assessment and streamflow modeling under changing climate in a data-scarce heterogeneous region: a case study of the Kabul River Basin. Water, 14(11):1697, 2022.
[3] Ghosh S., Mukherjee, J. Earth observation data to strengthen flood resilience: a recent experience from the Irrawaddy River. Natural Hazards, 6p, 2022.
[4] Nicol A., Debevec L, Ayaru S. O. Water and complex problemsheds in Karamoja, Uganda. Water International, 47(6):952-968, 2022.
[5] Mukherji A. Climate change: put water at the heart of solutions. Nature, 605(7909):195, 2022.
[6] Bekele, Tilaye Worku; Haile, Alemseged Tamiru; Trigg, M. A.; Walsh, C. L. Evaluating a new method of remote sensing for flood mapping in the urban and periurban areas: applied to Addis Ababa and the Akaki Catchment in Ethiopia. Natural Hazards Research, 2(2):97-110, 2022.
[7] Smuleac L., Rujescu C., ?muleac A., Imbrea F., Radulov I., Manea D., Ienciu A., Adamov T., Pa?calau R. Impact of Climate Change in the Banat Plain, Western Romania, on the Accessibility of Water for Crop Production in Agriculture. Agriculture, 10(10), 437, 2020.
[8] Matthews N., Dalton J., Matthews J., Barclay H., Barron J., Garrick D., Gordon L., Huq S., Isman T., McCornick P., Meghji A., Mirumachi N., Moosa S., Mulligan M., Noble A., Petryniak O., Pittock J., Queiroz C., Ringler C., Smith M., Turner C., Vora S., Whiting L.. Elevating the role of water resilience in food system dialogues. Water Security, 17:100126, 2022.
[9] Sharma S., Talchabhadel R., Nepal S., Ghimire G. R., Rakhal B., Panthi J., Adhikari B. R., Pradhanang S. M., Maskey S., Kumar S. Increasing risk of cascading hazards in the central Himalayas. Natural Hazards, 10p, 2022.
[10] Saha D., Sikka A., Goklani R. Artificial recharge endeavours in India: a review. Water Security, 16:100121, 2022.
[11] ?muleac A., ?muleac L., Man T. E., Popescu C. A., Imbrea F., Radulov I., Adamov T, Pa?calau R. Use of modern technologies for the conservation of historical heritage in water management. Water, 12(10), 2895, 2020.
[12] Lato K., Ni?a L., La?o A., Radulov I., Crista F., Berbecea A. Quality of soils from Barzava Plain for a sustainable agriculture, Journal of Food, Agriculture and Environment vol. 11(2), pp. 1060-1062, 2013.
[13]. Posea, G. Romanian Plains—Banato-Crisana Plain; Part IV, Banat Plain; Bucharest University Typography: Bucharest, Romania, pp. 32–67, 1992.
This paper is published from the own research funds of the University of Life Sciences "King Mihai I" from Timisoara.
conference
Proceedings of 22nd International Multidisciplinary Scientific GeoConference SGEM 2022
22nd International Multidisciplinary Scientific GeoConference SGEM 2022, 06-08 December, 2022
Proceedings Paper
STEF92 Technology
International Multidisciplinary Scientific GeoConference SGEM
SWS Scholarly Society; Acad Sci Czech Republ; Latvian Acad Sci; Polish Acad Sci; Serbian Acad Sci and Arts; Natl Acad Sci Ukraine; Natl Acad Sci Armenia; Sci Council Japan; European Acad Sci, Arts and Letters; Acad Fine Arts Zagreb Croatia; Croatian Acad Sci and Arts; Acad Sci Moldova; Montenegrin Acad Sci and Arts; Georgian Acad Sci; Acad Fine Arts and Design Bratislava; Turkish Acad Sci.
247-254
06-08 December, 2022
website
8793
floods, flow regularizations, Costei Hydrotechnical Node, water level, water flow