“主动预测-被动预警”联合冲击地压回弹预防系统的构建与应用——以宽沟煤矿为例

IF 1.8 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Lithosphere Pub Date : 2023-02-20 DOI:10.2113/2023/4407706
Jiantao Cao, Shuai Zhang, Huicong Xu, Wei Li, Jindong Wang
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引用次数: 0

摘要

随着煤矿开采深度和强度的不断增加,地压影响已成为煤矿开采面临的主要灾害之一,严重威胁着矿山安全。引入韧性城市设计理念,根据地质矿床条件和开采工艺条件对回采工作面冲击压力风险进行主动预测分析,利用监测数据进行被动预警,探索冲击前兆特征,构建韧性联合防治体系,是冲击压力管理的重要依据,对保障回采安全具有重要的工程意义。本文首先将整个工作面划分为小单元区域,构建BP神经网络预测模型,分别对每个小单元进行预测分析,推导出工作面不同区域的冲击地压危害等级分布;其次,建立了FLAC数值模型,分析了工作面不同回采距离下的应力分布和偏移特征,探索了冲击危险区的主要分布区域。最后,应用趋势法、临界值法和动态变化率法确定了宽沟煤矿冲击地压预警指标,建立了适用于宽沟煤矿冲击地压综合预警方法,并进行了现场应用,取得了良好的效果。本文的研究成果对促进国内具有类似地质条件和开采技术条件矿山的冲击危害分析与预警具有良好的科学意义和参考价值。
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Construction and Application of “Active Prediction-Passive Warning” Joint Impact Ground Pressure Resilience Prevention System: Take the Kuan Gou Coal Mine as an Example
With the increasing depth and intensity of coal mining, the impact on ground pressure has become one of the main disasters facing mining, seriously threatening mine safety. Introducing the concept of toughness urban design, building a joint toughness prevention and control system based on active prediction and analysis of the impact pressure risk at the back mining face according to the geological deposit conditions and mining technology conditions and passive warning using monitoring data to explore the impact precursor characteristics is an important basis for impact pressure management and has important engineering significance to ensure the safe back mining. In this paper, firstly, the whole working face is divided into small unit areas, and the BP neural network prediction model is constructed to predict and analyze each small unit separately, and the distribution of impact ground pressure hazard level in different areas of the working face is derived. Next, a FLAC numerical model was established to analyze the stress distribution and migration characteristics at different retrieval distances of the working face and to explore the main distribution areas of impact hazard. Finally, the trend method, critical value method, and dynamic rate of change method were applied to determine the early warning indicators of impact ground pressure in the Kuan Gou coal mine, establish a comprehensive early warning method of impact ground pressure applicable to the Kuan Gou coal mine, and carry out field application with good effect. The findings of this paper have good scientific significance and reference value for promoting impact hazard analysis and early warning in mines with similar geological conditions and mining technology conditions in China.
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来源期刊
Lithosphere
Lithosphere GEOCHEMISTRY & GEOPHYSICS-GEOLOGY
CiteScore
3.80
自引率
16.70%
发文量
284
审稿时长
>12 weeks
期刊介绍: The open access journal will have an expanded scope covering research in all areas of earth, planetary, and environmental sciences, providing a unique publishing choice for authors in the geoscience community.
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