Research of spatial location sanitary protection zones of industrial enterprises using methods of geoinformation modeling

dc.citation.epage143
dc.citation.journalTitleГеодезія, картографія і аерофотознімання
dc.citation.spage135
dc.citation.volume95
dc.contributor.affiliationНаціональний університет “Львівська політехніка”
dc.contributor.affiliationКав Медідаб
dc.contributor.affiliationLviv Polytechnic National University
dc.contributor.affiliationKav Medidab
dc.contributor.authorГрицьків, Назар
dc.contributor.authorБабій, Любов
dc.contributor.authorГоряінова, Ірина
dc.contributor.authorHrytskiv, Nazar
dc.contributor.authorBabiy, Lyubov
dc.contributor.authorHoryainova, Iryna
dc.coverage.placenameЛьвів
dc.coverage.placenameLviv
dc.date.accessioned2023-06-07T08:41:42Z
dc.date.available2023-06-07T08:41:42Z
dc.date.created2022-02-22
dc.date.issued2022-02-22
dc.description.abstractАктуальною є проблема застосування тематичного картографування територій виробничих об’єктів з метою отримання просторових даних про шкідливий вплив на навколишнє середовище. Одним з факторів, який мінімізує цей вплив, є дотримання санітарно-захисних зон. Території, відведені під санітарно-захисні зони, повинні відповідати актуальним даним про місцевість, змоделювати яку можна сучасними засобами ГІС-технологій з використанням даних дистанційного зондування Землі, що надасть можливість швидко та точно отримувати просторові характеристики об’єктів та проводити аналіз тематичної інформації. Тому, метою роботи є отримання та аналіз просторових тематичних даних про санітарно-захисні зони виробничих підприємств на основі базових геопросторових даних. Методика. Для просторового аналізу санітарно-захисних зон застосовано методику моделювання просторових даних за картографічними матеріалами та даними ДЗЗ і аналіз побудованої моделі. Результати. Створено картографічну модель та проаналізовано дотримання санітарно-захисних зон виробничими підприємствами м. Славута та Хмельницької атомної електростанції. Наукова новизна. Запропонована технологія дозволила поєднати картографічні дані та дані ДЗЗ у єдине програмне середовище і на їх основі виконати моделювання та аналіз санітарно-захисних зон підприємств міста Славута. Практична значущість. Картографічна модель доповнена актуальними даними ДЗЗ. Аналіз побудованої моделі вказав на сучасний стан дотримання санітарно-захисних зон виробничими підприємствами. Апробовану технологічну схему можна застосувати для моделювання і аналізу санітарно-захисних зон підприємств, які шкідливо впливають на навколишнє середовище.
dc.description.abstractThe problem of applying thematic mapping of production facilities in order to obtain spatial data about the harmful effects on the environment is relevant. One of the factors that minimizes this impact is the observance of sanitary protection zones. Areas designated for sanitary protection zones must correspond to current data, which can be modeled by modern GIS technology using remote sensing data of the Earth, which will allow you to quickly and accurately obtain spatial characteristics of objects and analyze thematic information. Therefore, the aim of the work is to obtain and to analyze spatial thematic data on sanitary protection zones of industrial enterprises. Methods. For the spatial analysis of sanitary protection zones the method of modeling of spatial data using cartographic and remote sensing data and the analysis of the constructed model are applied. Results. A cartographic model was created and compliance with sanitary protection zones by industrial enterprises of Slavuta and Khmelnytsky nuclear power plant was analyzed. Scientific novelty and practical relevance. It consists in the complex application of cartographic and remote sensing data for modeling and analysis of the location of sanitary protection zones of enterprises in the city of Slavuta. The obtained thematic geospatial data can serve to eliminate the shortcomings of planning and development of both enterprises and the surrounding infrastructure. The analysis of the results showed an unsatisfactory state of compliance to requirements of sanitary protection zones by industrial enterprises in Slavuta. The tested workflow can be used for modeling and analysis of sanitary protection zones of enterprises that have a harmful effect on the environment, which will increase the level of control in the field of sanitary legislation using GIS technologies.
dc.format.extent135-143
dc.format.pages9
dc.identifier.citationHrytskiv N. Research of spatial location sanitary protection zones of industrial enterprises using methods of geoinformation modeling / Nazar Hrytskiv, Lyubov Babiy, Iryna Horyainova // Geodesy, Cartography and Aerial photography. — Lviv : Lviv Politechnic Publishing House, 2022. — Vol 95. — P. 135–143.
dc.identifier.citationenHrytskiv N. Research of spatial location sanitary protection zones of industrial enterprises using methods of geoinformation modeling / Nazar Hrytskiv, Lyubov Babiy, Iryna Horyainova // Geodesy, Cartography and Aerial photography. — Lviv : Lviv Politechnic Publishing House, 2022. — Vol 95. — P. 135–143.
dc.identifier.doidoi.org/10.23939/istcgcap2022.95.135
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/59185
dc.language.isoen
dc.publisherВидавництво Львівської політехніки,
dc.publisherLviv Politechnic Publishing House
dc.relation.ispartofГеодезія, картографія і аерофотознімання (95), 2022
dc.relation.ispartofGeodesy, Cartography and Aerial photography (95), 2022
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dc.relation.referencesenArvanitis, L. G., Ramachandran, B., Brackett, D. P.,
dc.relation.referencesenAbd-El Rasol, H., & Du, X. (2000). Multiresource
dc.relation.referenceseninventories incorporating GIS, GPS and database
dc.relation.referencesenmanagement systems: a conceptual model. Computers
dc.relation.referencesenand Electronics in Agriculture, 28(2), 89–100.
dc.relation.referencesenhttps://doi.org/10.1016/S0168-1699(00)00124-1.
dc.relation.referencesenBissarinova, A., Mamyrova, A., Tussupova, B.,
dc.relation.referencesenBalgabayeva, L., & Mamyrbayev, O. (2016).
dc.relation.referencesenSimulation modeling of the spread of harmful
dc.relation.referencesenemissions into the atmosphere on the basis of
dc.relation.referencesengeographic information system (GIS) of monitoring
dc.relation.referencesenenvironmental condition of a megalopolis. Open
dc.relation.referencesenEngineering, 6(1). https://doi.org/10.1515/eng2016-0042.
dc.relation.referencesenBurshtynska, Kh. I., Dolynska I. V. (2011). Determining
dc.relation.referencesenthe resolution of space imaging systems. Geodesy,
dc.relation.referencesenarchitecture and construction: Proceedings of the
dc.relation.referencesenIV International Conference of Young Scientists
dc.relation.referencesenGAC-2011. Lviv: Lviv Polytechnic Publishing
dc.relation.referencesenHouse, 2011. pp. 196–199. (in Ukrainian).
dc.relation.referencesenDets, T. I., & Dmytriv O. P. (2011). Peculiarities of
dc.relation.referencesenlandscaping the territory of the 30-kilometer
dc.relation.referencesenobservation zone of nuclear power plants (on the
dc.relation.referencesenexample of Khmelnitsky NPP). (in Ukrainian).
dc.relation.referencesenhttp://science.lp.edu.ua/sites/default/files/Papers/gka_75_2011_19.pdf.
dc.relation.referencesenDrobnich, V. G., Pop, S. S., Peresolyak, R. V., Tsapulych,
dc.relation.referencesenO. T., & Karpyuk, V. M. GIS of ecological monitoring
dc.relation.referencesenand complex analysis of the state of the environment in
dc.relation.referencesenthe Zakarpattia region. 2013. (in Ukrainian).
dc.relation.referencesenhttps://dspace.uzhnu.edu.ua/jspui/handle/lib/739.
dc.relation.referencesenDruzhynin, M. A., & Pleshkanovska, A. M. (2015).
dc.relation.referencesenMethods of optimizing the territory of sanitary
dc.relation.referencesenprotection zones on the example of the city of
dc.relation.referencesenVinnytsia. Modern problems of architecture and
dc.relation.referencesenurban planning, (39), 201–205. (in Ukrainian).
dc.relation.referencesenGhodeif, K. O., Arnous, M. O., & Geriesh, M. H.
dc.relation.referencesen(2013). Define a protected buffer zone for Ismailia
dc.relation.referencesenCanal, Egypt using geographic information systems.
dc.relation.referencesenArabian Journal of Geosciences, 6(1), 43–53.
dc.relation.referencesenhttps://link.springer.com/article/10.1007/s12517-011-0326-3.
dc.relation.referencesenKharkova, A. S., & Chugai, A. V. (2018). "Danger
dc.relation.referencesenassessment of industrial enterprises of the
dc.relation.referencesenNikolaev area". All-Ukrainian scientific-practical
dc.relation.referencesenconference "Sustainable development of the
dc.relation.referencesencountry in the framework of European integration"
dc.relation.referencesenZhytomyr: ZhSTU, pp. 14–15. (in Ukrainian).
dc.relation.referencesenhttp://eprints.library.odeku.edu.ua/id/eprint/4719/1/JDTU_Harkova_8_2018_14.pdf.
dc.relation.referencesenMakarenko, N., & Budak, O. (2017). Waste management in
dc.relation.referencesenUkraine: Municipal solid waste landfills and their
dc.relation.referencesenimpact on rural areas. Annals of Agrarian Science, 15(1), 80–87. https://doi.org/10.1016/j.aasci.2017.02.009
dc.relation.referencesenLviv Polytechnic National University Institutional Repository http://ena.lpnu.ua
dc.relation.referencesenMusienko, O. V. Technology of designing sanitary
dc.relation.referencesenprotection zones using GIS. Urban planning and
dc.relation.referencesenspatial planning, (36), 2010. P.284–290. (in
dc.relation.referencesenUkrainian). http://library.knuba.edu.ua/books/zbirniki/MTP/MTP36.pdf.
dc.relation.referencesenOn approval of the State Sanitary Rules for Planning and
dc.relation.referencesenDevelopment of Settlements. Order 173 of June 19, 1996 was registered with the Ministry of Justice of
dc.relation.referencesenUkraine on July 24, 1996. Database "Legislation of
dc.relation.referencesenUkraine", Verkhovna Rada of Ukraine. URL:
dc.relation.referencesenhttps://zakon.rada.gov.ua/laws/main/z0379-96 (date 15.10.2019).
dc.relation.referencesenOrder "On approval of land management projects for the
dc.relation.referencesenorganization and establishment of the boundaries of
dc.relation.referencesenthe sanitary protection zone of the Khmelnitsky
dc.relation.referencesennuclear power plant". Order of the Khmelnytsky
dc.relation.referencesenRegional State Administration from 27.03.2013
dc.relation.referencesenNo. 84/2013. (in Ukrainian). https://www.admkm.gov.ua/?page_id=950.
dc.relation.referencesenProgram SAS.planet. http://www.sasgis.org/
dc.relation.referencesenRagaisis, V., Poskas, P., Simonis, V., & Adomaitis, J. E.
dc.relation.referencesen(2011). Environmental safety aspects of the new
dc.relation.referencesensolid radioactive waste management and storage facility
dc.relation.referencesenat the Ignalina Nuclear Power Plant. Kerntechnik, 76(5), 315–23. https://doi.org/10.3139/124.110174.
dc.relation.referencesenState building standards of Ukraine B.2.2-12:2018
dc.relation.referencesen"Planning and development of territories". Kyiv, 2018 URL: http://kbu.org.ua/assets/app/documents/
dc.relation.referencesen(date 10.11.2019). (in Ukrainian).
dc.relation.referencesenSvitlychny, O. O., & Plotnytsky, S. V. (2002).
dc.relation.referencesenGeoinformation technologies in nature management:
dc.relation.referencesenthe problem of spatial data. pp. 41–47. (in
dc.relation.referencesenUkrainian).
dc.relation.referencesenZoning of the territory of the city of Slavuta,
dc.relation.referencesenKhmelnytsky region. KO "Institute of the General
dc.relation.referencesenPlan of Kyiv". Agreement No. 323, GP-12 dated 24.09.2012 Kyiv, 2013. (in Ukrainian).
dc.relation.referencesenhttps://slavuta-mvk.gov.ua/archives/11857.
dc.relation.referencesenZoning plan of the territory (zoning) of Netishyn,
dc.relation.referencesenKhmelnytsky region. State Enterprise "Ukrainian
dc.relation.referencesenState Research Institute of Urban Design"
dc.relation.referencesenDipromisto named after Yu. Bilokon. Agreement
dc.relation.referencesenNo. 39, 2295 dated March 2, 2018, Netishyn. 2018.
dc.relation.referencesen(in Ukrainian).
dc.relation.urihttps://doi.org/10.1016/S0168-1699(00)00124-1
dc.relation.urihttps://doi.org/10.1515/eng2016-0042
dc.relation.urihttp://science.lp.edu.ua/sites/default/files/Papers/gka_75_2011_19.pdf
dc.relation.urihttps://dspace.uzhnu.edu.ua/jspui/handle/lib/739
dc.relation.urihttps://link.springer.com/article/10.1007/s12517-011-0326-3
dc.relation.urihttp://eprints.library.odeku.edu.ua/id/eprint/4719/1/JDTU_Harkova_8_2018_14.pdf
dc.relation.urihttps://doi.org/10.1016/j.aasci.2017.02.009
dc.relation.urihttp://ena.lpnu.ua
dc.relation.urihttp://library.knuba.edu.ua/books/zbirniki/MTP/MTP36.pdf
dc.relation.urihttps://zakon.rada.gov.ua/laws/main/z0379-96
dc.relation.urihttps://www.admkm.gov.ua/?page_id=950
dc.relation.urihttp://www.sasgis.org/
dc.relation.urihttps://doi.org/10.3139/124.110174
dc.relation.urihttp://kbu.org.ua/assets/app/documents/
dc.relation.urihttps://slavuta-mvk.gov.ua/archives/11857
dc.rights.holder© Національний університет “Львівська політехніка”, 2022
dc.subjectтематичне картографування
dc.subjectоновлення карт
dc.subjectдані дистанційного зондування Землі
dc.subjectсанітарно-захисна зона
dc.subjectГІС-технології
dc.subjectArcGIS
dc.subjectthematic mapping
dc.subjectmap updates
dc.subjectremote sensing data of the Earth
dc.subjectsanitary protection zone
dc.subjectGIS technologies
dc.subjectArcGIS
dc.subject.udc528
dc.subject.udc504
dc.subject.udc912
dc.titleResearch of spatial location sanitary protection zones of industrial enterprises using methods of geoinformation modeling
dc.title.alternativeДослідження просторового розташування санітарно-захисних зон виробничих підприємств методами геоінформаційного моделювання
dc.typeArticle

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