斯维尔斯克淡水矿床的形成特征

A. Kuranicheva, Yu. K. Lankin, O. O. Naumova, E. S. Verkhozina
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引用次数: 0

摘要

研究对象为位于伊尔库茨克二级自流盆地中部的Svirsk淡水矿床,该矿床是俄罗斯伊尔库茨克地区安加拉-莱拿一级自流盆地的一部分。从地质上讲,调查的地区位于前萨扬凹陷内,伊尔库茨克地下室使其更加复杂。研究的Svirsk水力坳陷局限于基岩斜坡与安加拉河之间的Kotikha河谷口至Kamenka河谷口的下寒武统碳酸盐岩构造挤压带(1967年建成的Bratsk水库)。本文通过对1968 - 2012年水文地质工作的分析,研究了该矿床的形成特征、补给来源和水文地球化学条件。研究方法包括利用综合地貌学分析,寻找一个位于恒定水头边界(安加拉河吸引的资源)影响区域内的具有高水库性质和满足饮用要求的高质量地下水的地点。该矿床的含水层厚度为13 ~ 38.7 m,为岩溶碳酸盐岩矿床。水电导率系数为1284 ~ 2500m2 /d,井流量变化范围为4.88 l/s (422 m3/d) ~ 18.2 l/s (1572 m3/d),分别减小0.78 m m。地下水的质量成分符合标准,而在野外,质量指标恶化。研究了新构造期地下饮用水矿床的形成条件,地下水水质满足集中供水的要求,主要水源为布拉茨克水库引水。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation features of the Svirsk fresh groundwater deposit
The object of the study is the Svirsk deposit of fresh groundwater located in the central part of the Irkutsk artesian basin of the second order, which is a part of the Angara-Lena artesian basin of the first order (Irkutsk region, Russia). Geologically, the area under investigation is located within the Pre-Sayan depression, which is complicated by the Irkutsk basement bench. The studied Svirsk hydraulic depression is confined to the tectonic crush zone of the Lower Cambrian carbonate rocks stripping from the mouth of the Kotikha river valley to the mouth of the Kamenka river valley between the bedrock slope and the Angara river (Bratsk reservoir since 1967). The purpose of this study is to study the formation features, supply sources and hydrogeochemical conditions of the deposit based on the analysis of hydrogeological work carried out over the period from 1968 to 2012. The research methodology includes the search for a site with high reservoir properties and high quality of groundwater meeting drinking requirements, which is located in the influence area of constant head boundaries (attracted resources of the Angara river) using a comprehensive geomorphological analysis. The described deposit is characterized by the aquifer thickness from 13 to 38.7 m, composed of karst carbonate deposits. The water conductivity coefficient is 1284–2500 m2/day, well flow rates vary from 4.88 l/s (422 m3/day) to 18.2 l/s (1572 m3/day) with a decrease of 0.78–1m respectively. The qualitative composition of groundwater meets the standards, whereas outside the field, quality indicators deteriorate. The authors have studied the neotectonic formation conditions of the deposit of underground drinking water, whose quality meets the requirements of the centralized water supply, the main source of which is the attracted resources of the Bratsk reservoir. 
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