用于环境民事保护目的的前喀尔巴阡水圈状况的地球物理研究

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS
Y. Starodub, V. Karabyn, A. Havrys, V. Kovalchuk, A. Rogulia, S. Yemelyanenko
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引用次数: 1

摘要

研究的目的是开发和开展喀尔巴阡前水系岩石圈在洪水紧急状态下区域生态变化的方法学研究。方法是将实验现场路径研究与理论模型研究、实验室科学比较、最终结果的分析与综合相结合,得出结果。研究的模型是喀尔巴阡山脉以东的乌克兰喀尔巴阡地区的洪水,洪水淹没了喀尔巴阡山脉前利沃夫地区的部分地区——工业和娱乐的重要地区:斯特布尼克、鲍里斯拉夫和德罗霍比奇城市。科学新颖性:本文旨在开发一种综合方法,通过对地球物理、地质和化学数据的综合解释,在考虑具有重要战略意义的前喀尔巴阡地区时,研究洪水问题中的领土。研究结果的理论意义和现实意义在于,论证了物化资料综合应用于地质信息资料实际解释的可行性和可能性。研究结果将用于地球物理学和生态学的应用研究,并有助于改善选定地区的生态状况。所取得的成果有助于发展地质信息技术,以便在紧急情况下进行复杂的地球物理-地质和化学研究,以确保领土的环境安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geophysical research in the pre-Carpathian hydrosphere situation for the environmental civil protection purposes
Object of research is to develop and carry out a methodology investigation of the regional ecological changes in the Pre-Carpathian hydro-lithosphere in a state of emergency caused by flooding. Method involves obtaining the results by integrating experimental field-path studies and theoretical model research, laboratory scientific comparison, the analysis and synthesis of final results. The studied model is the flooding in the Carpathian region east of the Carpathian arc in Ukraine, flooding parts of Pre-Carpathians Lviv region — industrially and recreationally important regions: Stebnyk, Borislav and Drohobych cities. Scientific novelty: the article aims to develop a method for an integrated approach to study of the territory in the question of flooding through a combined interpretation of geophysical, geological, and chemical data when considering a strategically important Pre-Carpathian region. The theoretical and practical significance of the results obtained is substantiating the feasibility and possibility of the complex application of geophysical-geological and chemical data for the practical interpretation of geoinformation data. Results will be of use to applied research in geophysics and ecology and contribute to improving of the ecological situation in selected regions. Obtained results contribute to the development of geoinformation technologies for complex geophysical-geological and chemical research in the environmental safety of territories in the event of emergencies.
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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