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Study on underlying coal and strata Pressure-relief Principle and the Gas Extraction Technique under Upper Protective Layer Mining

机译:上保护层采矿下煤层和地层压力 - 浮雕原理及气萃取技术研究

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摘要

By study on underlying coal and strata pressure-relief principle and the gas extraction technique under upper protective layer mining, we obtain the stress change and distribution law of underlying coal-rock mass. We analyze the deformation law and fracture development characteristics of underlying coal-rock mass movement. With mining proceeding ahead, the total floor coal and rock experiences compression deformation first, then expansion deformation and re-compaction of the continuous periodic destruction. Based on different development characteristics and status of underlying coal-rock mass, the underlying coal-rock mass under an effect of upper protective layer mining was divided into the floor heave fracture zone and the floor heave deformation zone in this paper. The permeability coefficient of change law of underlying the coal seam as follows: the original value-small decreasing-increasing greatly-reducing-stability at last. The field test for upper protective layer mining of Zhang-ji coal mine of Huainan shows that the effect of pressure relief of protected seam is very good. So it eliminates the risk of gas outburst, ensuring safety mining of the protected seam. The research has an important significance for safety and efficient production under similar exploitation conditions of low-permeability with high gas and outburst risk coal seam.
机译:通过对底层煤和地层压力释放原理和上部保护层下开采的气体提取技术研究中,我们得到下面的煤岩体的应力的变化和分布规律。我们分析了煤岩体运动背后的变形规律和裂缝发育特点。随着挖掘继续领先,总建筑煤岩经历压缩变形,然后再膨胀变形和连续的周期性破坏的再压制。基于不同的显影特性和底层煤岩体的状态,上部保护层开采的作用下,下层煤岩体分为底鼓断裂带和本文中的底鼓变形区。煤层底层的变化规律的渗透系数,如下所示:原始值小减小增加大大降低稳定性在最后。为淮南显示张骥煤矿上保护层开采的现场测试保护煤层卸压的效果非常好。因此,消除瓦斯突出的危险性,确保保护煤层安全开采。该研究对高瓦斯和突出危险煤层低渗透率的相似开采条件下安全,高效的生产具有重要的意义。

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