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首页> 外文期刊>Arabian journal of geosciences >Dynamic monitoring of the mining-induced fractured zone in overburden strata, based on geo-electrical characteristics
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Dynamic monitoring of the mining-induced fractured zone in overburden strata, based on geo-electrical characteristics

机译:基于地理电气特性

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摘要

Studies of the development height of mining-induced fractured zone in overburden strata are of great significance for safety and green mining of coal resources. Using geo-electrical response, a dynamic monitoring method for the fractured zone is investigated using the direct current resistivity method. Firstly, a numerical model of the mining-induced overburden is established and forward modeling is achieved from which the development of the caved zone and fractured zone is interpreted by inversion. The physical model then is designed, based on similarity theory and physical experiments, that displays visually dynamic deformation of the mining-induced overburden. After acquiring electrical data for the model, the inversion is done, based on which the development height of the fractured zone could be dynamically predicted. Finally, in order to prevent water inrush disasters, in situ investigations are carried out in one mine and height of the water-conducting fractured zone is determined. The researches show that the apparent resistivity inversion results, as the interpretation of caved zone and fractured zone, are approximately identical and the direct current resistivity method is proved to be an effective tool for dynamic monitoring of the mining-induced fractured zone.
机译:对覆盖层的开采诱导的碎裂区的开发高度研究对煤炭资源的安全和绿化挖掘具有重要意义。采用地理电响应,采用直流电阻率法研究了裂缝区的动态监测方法。首先,建立了采矿诱导的覆盖层的数值模型,并实现了向前建模,从中通过反转解释塌陷区和裂缝区的发展。然后基于相似性理论和物理实验设计了物理模型,其显示出采矿诱导的覆盖层的视觉动态变形。在获取模型的电气数据之后,基于该反转,基于该反转,基于该反转,基于该反转,基于该反转,基于该反转,基于该反转,基于该反转,基于该反转,裂缝区的开发高度可以动态预测。最后,为了防止水涌入灾害,在原位研究中在一个矿井中进行,并确定导电裂缝区的高度。研究表明,表观电阻率反转结果,作为塌陷区和裂缝区的解释是大致相同的,并且被证明是直流电阻率法是用于动态监测采矿诱导的裂缝区的有效工具。

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