Current hydrogeochemical profile of groundwater in the Middle Jurassic hydrogeological complex of the Lyaminsky oil and gas field

R. Abdrashitova, A. A. Prudchenko, M. A. Kadyrov, M. G. Poluyanov
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Abstract

The aim of the study is to identify the influence of some parameters of the geological environment on the formation of the current hydrogeochemical profile in the Middle Jurassic hydrogeological complex (layers YU2-4) of the Lyaminsky oil and gas field in Western Siberia.The factors controlling the changes in the chemical composition of the groundwater (geotemperatures, influence of neotectonics, etc.) after the process of sedimentation and water accumulation were analysed on the basis of the lithogenetic theory of the transformation of the composition of groundwater during geological evolution. In the course of the research, correlation coefficients were obtained for the value of groundwater mineralisation in the complex with the modern and paleotemperatures of the Tyumen suite, the porosity coefficient and the depth of the foundation. The obtained results allowed assuming that the current hydrogeochemical profile of the Middle Jurassic hydrogeological complex is the result of the consistent action of the whole complex of factors. The results of the analysis showed that the influence of neotectonic processes on the current hydrogeochemical profile is quite probable. The reasons for the heterogeneity of mineralisation, apart from neotectonic processes, may be different, but in any case, the identification of relationships such as "Mineralisation - a parameter of the state of the geological environment" indicates a change in the concentration of salts in groundwater after their accumulation together with sediment.
里亚明斯基油气田中侏罗纪水文地质复合体地下水水文地质化学现状剖面图
本研究的目的是确定地质环境的某些参数对西西伯利亚利亚明斯基油气田中侏罗纪水文地质综合体(YU2-4层)当前水文地质化学剖面形成的影响。根据地质演变过程中地下水成分变化的岩石成因理论,分析了沉积和积水过程后地下水化学成分变化的控制因素(地质温度、新构造的影响等)。在研究过程中,获得了综合体中地下水矿化度值与秋明岩组现代和古温度、孔隙度系数和地基深度的相关系数。分析结果表明,中侏罗纪水文地质综合体目前的水文地质化学特征是整个综合因素一致作用的结果。分析结果表明,新构造过程对当前水文地质化学剖面的影响是很有可能的。除了新构造过程之外,造成矿化异质性的原因可能各不相同,但无论如何,"矿化--地质环境状况的参数 "等关系的确定表明,地下水中的盐类在与沉积物一起积累之后,其浓度发生了变化。
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