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Experimental study of stress permeability behavior of single persistent fractured coal samples in the fractured zone

机译:裂缝区中单持续裂缝煤样的应力渗透行为的实验研究

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摘要

The coal and rock masses located in a fractured zone are generally subject to shear and tensile stresses and respective damages, which increase their permeability and produce new channels of gas migration. This directly affects the gas extraction and the safe mining of the adjacent coal seams. This experimental study of the single persistent fractured coal samples (SPFCS) in the fractured zone of the Huainan coal mine, China, investigates the stress-permeability relationships of the SPFCS under cyclic loading and unloading. The permeability of the SPFCS was found to be much higher than that of elastic coal samples and exhibited a decreasing trend with the effective stress. The longer the compression time, the greater the permeability loss, but the impact of the compaction time on the permeability loss gradually decreases with the increase in the compaction time. The mechanism of permeability loss and changes during the cyclic loading-unloading are analyzed based on the experiment results. The results show that the fracture surface crushing, re-arrangement, and compressional deformation of pulverized coal in the loading process lead to a drastic drop in permeability. Besides this, the axial permeability sensitivity to the confining stress is found to be much higher than that to the axial stress.
机译:位于裂缝区的煤和岩石通常经过剪切和拉伸应力和各自的损伤,这增加了它们的渗透性并产生了新的气体迁移通道。这直接影响了相邻煤层的气体提取和安全挖掘。这种实验研究在中国淮南煤矿骨折区中的单一持续碎屑煤样品(SPFCs)调查了循环载荷和卸载下SPFC的应力渗透关系。发现SPFC的渗透率远高于弹性煤样的高度,并具有有效应力的降低趋势。压缩时间越长,渗透性损失越大,但压实时间对渗透性损失的影响随压实时间的增加而逐渐降低。基于实验结果,分析了循环加载卸载期间的渗透性损失和变化的机制。结果表明,在装载过程中粉煤的断裂表面破碎,重新布置和压缩变形导致渗透性的激烈降落。除此之外,发现对限制应力的轴向渗透性敏感性远高于轴向应力。

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