[2] Smith W. H. F., Sandwell D. T. Conventional Bathymetry, Bathymetry from Space, and Geodetic Altimetry. Oceanography 2004:17(1):8–23. http://dx.doi.org/10.5670/oceanog.2004.6310.5670/oceanog.2004.63
[3] Dumpis J., Lagzdins A. Methodology for Bathymetric Mapping Using Open-Source Software. Environmental and Climate Technologies 2020:24(3):239–247. http://dx.doi.org/10.2478/rtuect-2020-010010.2478/rtuect-2020-0100
[4] Gao J. Bathymetric mapping by means of remote sensing: Methods, accuracy and limitations. Progress in Physical Geography 2009:33(1):103–116. http://dx.doi.org/10.1177/030913330910565710.1177/0309133309105657
[5] Lyzenga, D. R. Passive remote sensing technique for mapping water depth and bottom features. Applied Optics 1978:17(3):379–383. http://dx.doi.org/10.1364/AO.17.00037910.1364/AO.17.00037920174418
[6] Dixon T. H., McNutt M. K., Smith S. M. Bathymetric prediction from SEASAT altimeter data. Journal of Geophysical Research 1983:88(C3):1563–1571. http://dx.doi.org/10.1029/JC088iC03p0156310.1029/JC088iC03p01563
[7] Borowiak D., Nowiński K., Grabowska K. A new bathymetric survey of the Suwałki Landscape Park lakes. Limnological Review 2017:16(4):185–197. http://dx.doi.org/10.1515/limre-2016-002010.1515/limre-2016-0020
[8] Popielarczyk D., Templin T., Łopata M. Using the geodetic and hydroacoustic measurements to investigate the bathymetric and morphometric parameters of Lake Hańcza (Poland). Open Geosciences 2015:7(7):854–869. http://dx.doi.org/10.1515/geo-2015-006710.1515/geo-2015-0067
[9] Kovalchuk I. P., Martyniuk V. A. Methodology and experience of landscape-limnological research into lake-basin systems of Ukraine. Geography and Natural Resources 2015:36(3):305–312. http://dx.doi.org/10.1134/S187537281503011710.1134/S1875372815030117
[10] Alokhina O., et al. Solar activity and water content of closed lake ecosystems. 2020 33rd General Assembly and Scientific Symposium of the International Union of Radio Science, URSI GASS 2020. https://doi.org/10.23919/URSIGASS49373.2020.9232274
[11] The role of water in socio-economic development: report 1 of IHP-II Project C1 (on heightening awareness of the socio-economic role of water) / prepared for the International Hydrological Programme by the Working Group of Project C1 (IHP-II). Paris: Unesco, 1987.
[13] Akhtar N., et al. Various Natural and Anthropogenic Factors Responsible for Water Quality Degradation: A Review. Water 2021:13(19):2660. https://doi.org/10.3390/w13192660
[14] Khatri N., Tyagi S. Influences of natural and anthropogenic factors on surface and groundwater quality in rural and urban areas. Frontiers in Life Science 2014:8(1):1–17. http://dx.doi.org/10.1080/21553769.2014.93371610.1080/21553769.2014.933716
[16] Karpenko N. Heomorfolohiia ozernykh ulohovyn Shatskoho poozeria (Geomorphology of depressions of the Shatsk Lake region). Glacial and periglacial of Volyn Polissya. Lviv, 2005. (in Ukrainian)
[17] Ilyin L. V., Molchak Ya. O. Lakes of Volyn region: Limno-geographical characteristics (Ozera Volynskoi oblasti: Limno-heohrafichna kharakterystyka). Lutsk, 2000. (in Ukrainian)
[18] Kraemer B., et al. Morphometry and Average Temperature Affect Lake Stratification Responses to Climate Change. Geophysical Research Letters 2015:42(12):4981–4988. http://dx.doi.org/10.1002/2015GL06409710.1002/2015GL064097
[20] Tutkovskiy P. A. Ozero Svityaz i narodnyye predaniya o nem (Lake Svityaz and folk legends about it). Kiyevskaya starina 1901:72(3):144–150. (in Russian)
[22] Lencewicz St. Miedzyrzecze Bugu i Prypeci. Wody plynace i jeziora (Between the rivers Bug and Prypiat. Running waters and lakes). Przeglad geograficzny 1931:11:5–72. (in Polish)
[24] Trofymchuk A. N., et al. Informatsiine zabezpechennia hidroakustychnoho monitorynhu ozer Zakhidnoho Polissia (Information support of hydroacoustic monitoring of the Western Polesie lakes). Environmental safety and natural resources 2015:1(17):5–14. (in Ukrainian)
[25] Choiński А., et al. Zmiana batymetrii jeziora Świtaź w latach 1929–2012 (Bathymetry Change of Lake Svitiaz in 1929–2012). West Polissya Nature and Adjacent Territories 2012:9:55–59. (in Polish).
[26] Koshovyy V. V., et al. Svidotstvo pro reiestratsiiu avtorskoho prava na tvir № 103760 «Baza danykh «Baza heodanykh tsyfrovoi modeli mistsevosti biosfernoho rezervatu «Shatskyi» («BHD TsMM BR «Shatskyi») (Certificate of copyright registration for the work № 103760 «Database «Geodatabase of the digital terrain model of the «Shatskyi Biosphere Reserve» («GDB DTM BR «Shatskyi»). Registration date 05.04.2021. (in Ukrainian)
[27] Alokhina O. V., et al. Batymetrychni doslidzhennia ozera Svitiaz: mynule, suchasnist ta perspektyvy (Bathymetric Study of the Svityaz’ Lake: the Past, the Present and Prospects). West Polissya Nature and Adjacent Territories 2014:11:24–32. (in Ukrainian).
[28] Alokhina O. V., et al. Batymetrychni doslidzhennia ozera Svitiaz v okoli roztashuvannia mozhlyvykh pidzemnykh dzherel yoho vodopostachannia (Bathymetry investigations of Svitiaz lake in the area of probable water supply underground sources location) Environmental safety and natural resources 2020:34 (2):53–71. (in Ukrainian) http://dx.doi.org/10.32347/2411-4049.2020.2.53-7110.32347/2411-4049.2020.2.53-71
[29] Zaleski I. I., et al. Shatske poozeria. Heolohichna budova ta hidroheolohichni umovy (Shatsk Lakeland. Geological structure and hydrogeological conditions). Lutsk, 2014. (in Ukrainian)
[30] Ilyin L. V. Limnokompleksy Ukrainskoho Polissia. U 2-kh t. T. 1: Pryrodnycho-heohrafichni osnovy doslidzhennia ta rehionalni zakonomirnosti (Limnocomplexes of Ukrainian Polissya. In 2 vols. Vol. 1: Natural and geographical bases of research and regional regularities). Lutsk, 2008. (in Ukrainian)
[31] Ilyin L. V., Lavreniuk T. L. Osoblyvosti ozernykh ulohovyn Ukrainskoho Polissia ta yikhnii zviazok z limnichnymy osoblyvostiamy (The features of lake basins of Ukrainian Polissya and their connection with limnic features). Hydrology, Hydrochemistry and Hydroecology 2002:3:115–119. (in Ukrainian)
[32] Yakushko O. F. Printsipy vydeleniya i klassifikatsii akvalnykh landshaftov (Principles of identification and classification of aquatic landscapes). Vestnik of the Belarusian State University. Biology. Series 2 1986:1:53–58. (in Russian)
[34] Muravskyi L. I., et al. Research report «Rozrobka metodiv monitorynhu lokalnykh ekosystem Shatskoho natsionalnoho pryrodnoho parku z vykorystanniam nazemnykh sposterezhen, tsyfrovoi kolorometrii ta analizu kosmoznimkiv» (Development of methods for local ecosystems monitoring of the Shatsk National Nature Park using ground-based observations, digital colorimetry and analysis of space images). Lviv: Karpenko Physico-Mechanical Institute of the NAS of Ukraine, 2008.
[37] Alokhina O. V., et al. Heoinformatsiina skladova informatsiino-analitychnoi systemy upravlinnia rozvytkom biosfernoho rezervatu «Shatskyi» (A geoinformation component of the information-analytical system of management by the ‘Shatskyi’ Biosphere Reserve development). West Polissya Nature and Adjacent Territories 2015:12:25–32. (in Ukrainian)
[38] Artemov Yu. G. Raspredeleniye i potoki metanovykh struynykh gazovydeleniy v Chernom more (Distribution and fluxes of streaming (bubbling) methane in the Black Sea). PhD Thesis. Sevastopol, 2014. (in Russian)
[39] Makarov M. M. Puzyrkovyye vykhody metana iz donnykh otlozheniy ozera Baykal (Methane fluxes from bottom sediments of Lake Baikal). PhD Thesis. Irkutsk, 2016. (in Russian)
[40] Chernykh D. V., et al. Novyy akusticheskiy metod kolichestvennoy otsenki puzyrkovogo potoka metana v sisteme donnyye otlozheniya – vodnaya tolshcha i ego realizatsiya na primere morya Laptevykh. Severnyy Ledovityy ocean (New acoustical technique to quantify methane ebullition in sediment water column: a case study in the Laptev sea, the Arctic ocean). Bulletin of the Tomsk Polytechnic University. Geo Аssets Engineering 2018:329.11:153–167. (in Russian) https://doi.org/10.18799/24131830/2018/11/218