别尔斯基隆起谢什马地层复合体的地质和水文地质结构

Maxim I. Yarkov, Larisa O. Leibovich, Pavel A. Krasilnikov, Galina M. Batrakova
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引用次数: 0

摘要

相关性。向彼尔姆地区东北部的一个油田提供工业和技术用水非常重要。根据底土利用和环境保护的要求,需要在油田北部建立供水水源卫生限制区。目前对谢什马(Sheshma)含水层群的地质结构、地下水条件和循环的研究将评估其资源,并详细说明油田供水的组织工作。目的研究谢什马含水层群的地质结构和地下水条件。目标。谢什马含水层群的地层岩石和地下水条件。方法。研究档案记录,对领土进行水文地质调查,钻探地下水勘探井,在洪水期和枯水期对地下水勘探井进行试验性过滤。结果。作者发现了谢什马地层的厚度(从 100-150 米到 300 米)、岩石的岩性组成以及谢什马含水层复合体的地下水条件。结果表明,地下水是作为杜林斯基槽内独立的含水夹层和区块系统沉积的。确定了含水量最高的区域。在低渗透厚度的谢什马岩层中发现了由细粒砂岩和粗粒砂岩组成的两个含水层。这两个含水层在水力上并不相连,相互之间被一层 40 米厚的防水泥岩隔开。地下水沉积为具有诺伊曼边界条件的地层,自西向东呈次纵向分布。所获得的数据可进一步用于解决研究区域内的供水问题以及这些水的合理利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geological and hydrogeological structure of the Sheshma terrigenous complex of the Belsky uplift
Relevance. The importance of industrial and technical water supply to an oil field in the north-east of Perm region. The requirements to subsoil use and environment protection demand a sanitary restriction zone of the water supply source in the northern part of the field. The current study of a geological structure and groundwater conditions and circulation of Sheshma aquifer complex will assess its resources and elaborate on organization of water supply to the oil field. Aim. To study geological structure and groundwater conditions of Sheshma aquifer complex. Objects. Formations rocks and groundwater conditions of Sheshma terrigenous complex. Methods. Studying the archival records, conducting a hydro-geological survey of the territory, drilling groundwater exploration wells, conducting pilot-filtration works on groundwater exploration wells in the flooding and low-water period. Results. The authors have discovered Sheshma formation thickness, which ranges from 100–150 to 300 m, and lithological composition of rocks and groundwater conditions of Sheshma aquifer complex. It was established that groundwater is deposited as a system of separate isolated water-bearing interlayers and blocks within the Durinsky trough. The most water-bearing zones were identified. Two aquifers of fine-grained and coarse-grained sandstones were detected in low-permeability thickness of Sheshma formation. The aquifers are not hydraulically connected and are separated from each other by a 40 m thick layer of water-resistant mudstones. Groundwater is deposited as strata with Neumann's boundary conditions, orientated sublatitudinally, from west to east. The obtained data can be further used to solve the issues of water supply within the area under study and the rational use of these waters.
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