磁法在致密油气研究中的作用:导论

O. Menshov
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引用次数: 1

摘要

研究油气田近地表地质剖面和土壤的方法是一种快速、节能、廉价的技术。非常规或经典类型的技术是相同的,因此矿床的成因并不重要。磁强法在油气勘探中的高信息量是建立在油气运移(微渗流)假设基础上的。这一事实已被地震、放射性和地球化学方法所证实。以哈尔科夫地区Bogodukhovsky地区Balabanovka地区的油气矿床为例进行了研究。在这个阶段,我们只分析了一部分侦察材料。土壤为深中腐殖质黑钙土。我们在油气影响区收集了29个样品:Nedilna-1井(生产)和Nedilna-2井(非生产)。在实验室条件下,用kappbridge KLY (Agico,捷克共和国)测量质量比磁化率(χ, MS),用MS2B (barington,英国)测量其频率依赖性χ fd。土壤中己烷的含量是在乌克兰国家科学院地质科学研究所实验室测定的。在ArcGIS环境下,采用IDW插值法绘制地图。西部正己烷含量MS值升高与MS值降低存在重叠区域。增加的MS值记录在生产井Nedilna-1的区域。在非生产性井Nedilna-2附近检测到平均MS值。正己烷含量的最大值均出现在两口井附近。MS与土壤中己烷含量呈平均负相关,R= -0.4 (n=28, p<0.05, R≥0.3233)。烃类及其氧化产物具有明显的迁移迁移性,导致从矿床带向土壤形成自磁性矿物。其结果是磁化率、剩余磁化率和其他磁性参数的异常值的形成。
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THE ROLE OF MAGNETIC METHODS IN THE STUDY OF AREAS OF THE TIGHT OIL AND GAS: INTRODUCTION
methods for studying the near surface geological section and soil of hydrocarbon fields is a fast, energy-saving and cheap technology. The technique is the same for the unconventional or classical type, thus the genesis of the deposit is not important. The high information content of magnetometry in oil and gas exploration is based on the assumption of hydrocarbon migration (microseepage). This fact is confirmed by seismic, radioactive, and geochemical methods. The case study from hydrocarbon deposit at the area of Balabanovka, Bogodukhovsky district, Kharkov region, is considered. At this stage, we analyze only a part of the reconnaissance materials. The soil is deep medium-humus chernozems. We collected 29 samples at the areas of hydrocarbon influence: well Nedilna-1 (productive) and Nedilna-2 (non-productive). In laboratory conditions, the mass-specific magnetic susceptibility ( χ , MS) was measured with kappabridge KLY (Agico, Czech Republic), and its frequency dependence χ fd by the MS2B (Bartington, UK). The content of hexane in soil was determined at the laboratory of the Institute of Geological Sciences of the NAS of Ukraine. The maps were built using the IDW interpolation method in the ArcGIS environment., There are areas of overlap of increased MS values and decreased values of the hexane content in the western part. The increased MS values were registered in the zone of the productive well Nedilna-1. The average MS values were detected near the non-productive well Nedilna-2. The maximum values of the hexane content were registered near both wells. The correlation analysis of MS and the content of hexane in soils showed the presence of an average negative relationship: R= -0.4 (n=28, p<0.05, r ≥ 0.3233). Hydrocarbons and their oxidation products have significant migratory mobility, which leads to the formation of autogenous magnetic minerals from the deposit zone to the soil. The result is the formation of anomalous values of magnetic susceptibility, remanent magnetization, and other magnetic parameters.
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