A METHOD FOR EVALUATING THE BALANCE AND QUALITY OF GROUNDWATER AND MINE WATER IN THE SYSTEM OF HYDRAULICALLY CONNECTED MINES

D. Rudakov, Sun Yajun, O. Inkin
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Abstract

Purpose. This study aims to develop and test a method for analytical evaluating the water-salt balance within a group of hydraulically connected mines. Methods. The proposed approach includes collection, systematisation, and analysis of actual data on the flow properties of rocks, mining and geological conditions of mining coal seams that influence forming the hydrodynamic regime of the mines of the Selydivska group. To evaluate the water-salt balance of the hydraulically connected mines, the balance method and the analytical relationships of the groundwater flow theory were used. Results. The water-salt balance elements for the hydraulically connected mines of the Selydivska group were calculated for three variants having reached the good conformity with available actual data on inflows and interflows between the mines. Inter-mine fluxes of total salt mass and salts were estimated as well as iron and manganese as microelements with the highest content in mine water. According to on the predictive estimate, the increase in the water level in mine no. 2 “Novogrodivska” from +130 m to +180 m will lead to an increase in the inter-mine water inflow of up to 10% to the active mine no. 1–3 “Novogrodivska” with a proportional increase in salt flux. Novelty. The method of calculating the water-salt balance of hydraulically connected mines based on the balance method in combination with the analytical relations of the groundwater flow theory has been substantiated and verified. The developed technique allows to preliminary estimate hydrogeochemical regime parameters without discretization of the flooded mine territory in comparison to sophisticated numerical models. Practical significance. The proposed technique can be used both for engineering predictions of the groundwater and surface water quality near closed mines, and for substantiation of a conceptual model for numerical analysis of the hydrogeochemical regime in the territories of former mineral extraction.
水连矿井系统中地下水与矿井水平衡及水质的评价方法
目的。本研究旨在开发和试验一种分析评价水系连片矿山水盐平衡的方法。方法。拟议的方法包括收集、系统化和分析有关岩石流动特性、采矿和开采煤层地质条件的实际数据,这些数据会影响Selydivska集团矿山水动力机制的形成。运用平衡法和地下水流动理论的分析关系,对水连矿山的水盐平衡进行了评价。结果。计算了Selydivska集团水联矿井的三种不同的水盐平衡元素,与现有的矿井间流入和流入的实际数据很好地吻合。估算了总盐质量和盐类的矿间通量,以及矿水中含量最高的微量元素铁和锰。根据预测估计,该矿井的水位上升幅度较大。2“Novogrodivska”从+130 m增加到+180 m,将导致矿井间涌水量增加10%。1-3“Novogrodivska”,盐通量成比例增加。新鲜事物。以平衡法为基础,结合地下水流动理论的分析关系,计算水系矿井水盐平衡的方法得到了证实和验证。与复杂的数值模型相比,所开发的技术允许初步估计水文地球化学状态参数,而无需对淹水矿山区域进行离散化。现实意义。所提出的技术既可用于关闭矿山附近地下水和地表水水质的工程预测,也可用于证实一个概念模型,用于对以前矿物开采地区的水文地球化学制度进行数值分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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