Please use this identifier to cite or link to this item: https://sci.ldubgd.edu.ua/jspui/handle/123456789/10962
Title: Geophysical research in the pre-Carpathian hydrosphere situation for the environmental civil protection purposes
Other Titles: Геофізичні дослідження обстановки Передкарпатської гідросфери для цілей цивільного захисту навколишнього середовища
Authors: Стародуб, Юрій Петрович
Гаврись, Андрій Петрович
Карабин, Василь Васильович
Ковальчук, Віктор Миколайович
Рогуля, Андрій Олексійович
Ємельяненко, Сергій Олександрович
Keywords: цивільна безпека
моделювання
Issue Date: 2022
Citation: [1] Bronnikova L.V. (2015) Post-classical science: a new type of knowledge production [Postneklasychna nauka: novyy typ vyrobnytstva znannya], Scientific papers. Philosophy 250(262), 30–33. (in Ukrainian). [2] Lukner L., Shestakov V. (1976) Geofiltrationmodeling. Nedra, 407 p. (in Russian). [3] Kolot A.M. (2014) Interdisciplinary approach as the dominant of the development of economic science and educational activities [Mizhdystsyplinarnyi pidkhid yak dominant rozvytku ekonomichnoi nauky ta osvitnoi diialnosti], Social economy. V. 48, no. 1-2, 76–83. (in Ukrainian). [4] Sivapalan M., Savenije H. H., Blöschl G. (2012) Socio-hydrology: A new science of people and water, Hydrological Processes 26 (8), 1270–1276, https://doi.org/10.1002/hyp.8426. [5] Ruiz-Frau A., Possingham H.P., Edwards-Jones G., Klein C.J., Segan D., Kaiser M.J. (2015) A multidisciplinary approach to the design of marine protected areas: the integration of science and stakeholder-based methods, Ocean Coast Manage 103, 86–93. [6] Kura N.U., Ramli M.F., Ibrahim S., Sulaiman W.N.A., Aris A.Z. (2014) An integrated assessment of seawater intrusion in a small tropical island using geophysical, geochemical and geostatistical techniques, Environ.SciPollut Res. 21 (11), 7047–7064. [7] Starodub Y., Karpenko V., Karabyn V., Shuryhin V. (2020) Mathematical Modeling of the Earth Heat Processes for the Purposes of Eco-technology and Civil Safety. Proc. IEEE CSIT 2020, 23-26 September, 2020, Zbarazh-Lviv, Ukraine: 146-149. [8] Khorolskyi A., Hrinov V., Kaliushenko O. (2019) Network models for finding optimal economic and environmental development strategies. Procedia Environmental Science, Engineering and Management. 6(3): 463-471. [9] Malovanyy M, Petrushka K. Petrushka I. (2019) Improvement of Adsorption-Ion-Exchange Processes for Waste and Mine Water Purification. Chem. Chem. Technol. 13(3): 372–376. [10] Lund J.R. (2015) Integrating social and physical sciences in water management, Water Resours. Res. 51, 5905–5918, doi: 10.1002 / 2015WR017125. [11] Starodub Y., Karabyn V., Havrys A., Levycka I. (2016) Interboundary natural state medium on the Baltic-Black sea waterways of the western Bug-Dnister segment, Materials of the International Scientific and Technical Seminar "Drogi wodne Europysrodkowo-Wschodniej", 142–146. [12] Dolenko G.N., Rizun B.P., Senkovsky Yu.N. (1980) Geology and oil and gas content of the Volyn-Podilsky plate [Geologiyai neftegazonosnost Volyino-Podolskoy plityi], Science Thought, 106 pp. (in Russian). [13] Orlov O.O., Kaliniy T.V., Kaliniy Yu.A. (2014) Prospects of oil and gas bearing capacity of the Volyn-Podilsky plate and the outer zone of the Carpathian forehead [Perspektyvy naftohazonosnosti Volyno-Podilskoi plytyi Zovnishnoi zony Peredkarpatskoho prohynu], Naftogazovaya branch of Ukraine. No. 3, 9–13. (in Ukrainian). [14] Giletsky Y.R. (2012) Natural-geographical zoning of the Ukrainian Carpathians as the basis of optimization of nature use in the region [Pryrodno-heohrafichne raionuvannia Ukrainskykh Karpat yak osnova optymizatsii pryrodokorystuvannia u rehioni], Scientific Bulletin of the Chernivtsi University. Geography. Exp. 612–613. Geography, 28–32. (in Ukrainian). [15] Stupka O.I. (2013) Tectonic zoning of the Ukrainian Carpathians: the present state, problems [Tektonichne raionuvanniaUkrainskykh Karpat: suchasnyi stan, problemy], Geology and geochemistry of combustible fossils. No. 3-4 (164-165), 83–107. (in Ukrainian). [16] Lazaruk Y., Karabyn V. (2020) Shale gas in Western Ukraine: Perspectives, resources, environmental and technogenic risk of production. PetCoal; 62(3):836-844. [17] Karabyn V., Popovych V., Shainoha I., Lazaruk Ya. (2019) Long-term monitoring of oil contamination of profile-differentiated soils on the site of influence of oil-and-gas wells in the central part of the Boryslav-Pokuttya oil-and-gas bearing area, Pet Coal, 61(1), 81–89. [18] Tsaitler M.Ya., Scrobach T. B., Sen'kov V.M. (2010) Features of reclamation of dumps of ozokerite production in Boryslav region [Osoblyvosti rekultyvatsii vidvaliv ozokeryto-vydobuvannia Boryslavshchyny], Scientific Bulletin NLTU of Ukraine, edition 20 (3), 47–51. (in Ukrainian). [19] National Tisza River Basin Management Plan, http://buvrtysa.gov.ua/newsite/download/National%20plan%20final_ost.pdf. [20] Vinogradov A.P. (1962) The average content of chemical elements in the main types of igneous rocks of the earth's crust [Srednee soderzhanie himicheskih elementov v glavnyih tipah izverzhennyih gornyih porod zemnoy koryi], Geochemistry, No. 7, 555–572. (in Russian). [21] Starodub Yu.P.,Ursulyak P.P., Havrys A.P. (2019) Information technology in computer simulation of ecological and geophysical processes [Informatsiini tekhnolohii v kompiuternomu modeliuvanni ekoloho-heofizychnykh protsesiv], Rastr 7, Lviv, Ukraine, 224 pp. (in Ukrainian). [22] The EU Water Framework Directive. 2012. doi:10.2779/75229.
URI: https://sci.ldubgd.edu.ua/jspui/handle/123456789/10962
Appears in Collections:2022
2022

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