Impact of the closure of a coal district on the environmental issue of long-term surface movements

IF 0.9 Q4 GEOSCIENCES, MULTIDISCIPLINARY
A. Vervoort
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引用次数: 3

Abstract

The environmental impact of deep underground coal mines using the longwall mining method is diverse, e.g., short- and long-term subsidence, damage to surface infrastructure, disturbance of the hydrogeological conditions, and the quality of groundwater and surface water. The study presented focusses on the long-term surface movements after the closure of an entire coal district. Due to the flooding of the underground infrastructure and rock mass, an upward surface movement or uplift is observed. For a specific site in the Campine coal district, Belgium results are presented of satellite data (radar-interferometry). However, the main aim of the study is to better understand the process of uplift and to determine the various mechanisms that are involved. For this purpose, an analytical framework was developed recently, and it was applied successfully in a relatively easy case. The case study of the paper is more challenging, but the usefulness of the analytical framework is clearly confirmed. The most important conclusions are that (i) the uplift is induced by an increase in water pressure after the closure, i.e., re-establishing the original hydraulic gradient, (ii) the expansion of both the goaf volumes and the volumes of the non-collapsed rock mass must be considered, and (iii) the assumption of a linear decrease of water pressure variation from the top to the bottom of the mined area at the end of the mining phase provides the most realistic results. However, the next step in the analysis should focus on a more advanced hydrogeological model of the complex underground environment.
煤矿区关闭对长期地表移动环境问题的影响
深埋煤矿采用长壁开采法开采对环境的影响是多方面的,如短期和长期的沉陷、对地表基础设施的破坏、水文地质条件的扰动以及地下水和地表水的质量。所提出的研究侧重于整个煤矿区关闭后的长期地表运动。由于地下基础设施和岩体的淹没,观察到一个向上的地表运动或隆起。对于比利时Campine煤区的一个特定地点,给出了卫星数据(雷达干涉测量)的结果。然而,这项研究的主要目的是更好地了解隆升的过程,并确定所涉及的各种机制。为此,最近开发了一个分析框架,并在一个相对简单的案例中得到了成功的应用。本文的案例研究更具挑战性,但分析框架的有用性得到了明确的证实。最重要的结论是,(我)隆起的增加引起的水压力在关闭之后,也就是说,重建原来的水力梯度,(ii)的扩张的采空区卷和卷non-collapsed必须考虑岩体,和(3)的假设一个线性减少水压变化从上到下的开采区域的开采阶段提供了最真实的结果。然而,下一步的分析应该集中在复杂地下环境的更先进的水文地质模型上。
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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来源期刊
AIMS Geosciences
AIMS Geosciences GEOSCIENCES, MULTIDISCIPLINARY-
自引率
7.70%
发文量
31
审稿时长
8 weeks
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