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Permeability evolution of deep coal samples subjected to energy-based damage variable

机译:深煤样的渗透性演变对能量为基础的损伤变量

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A better understanding of mining-induced permeability evolution of coals is of an importance for underground coal extraction and coalbed methane exploitation. In this paper, a laboratory study of coal permeability evolution is carried out by simulation of in-situ mining-induced stress state of coals in a deep coal seam. The permeability of coals is estimated by the fractional derivative transient pulse method. And the whole deformation and failure process of coals is studied on the basis of the energy evolution, after which a modified damage variable is defined based on accumulative dissipated energy. Moreover, the evolution of permeability is characterized with damage variable, indicating that the dissipated energy density and the damage variable increase in the post-yield stage. The permeability reduces in the process of stress-induced compaction and starts to increase after the onset of dilatancy. It is found that the permeability appears to be a negative power correlation with damage variable in compaction stage while a positive power relationship is observed after dilation. Furthermore, a correlation formula of permeability and energy-based damage variable is suggested to consider the effects of mining depth on permeability of coal.
机译:更好地理解煤的采矿诱导的渗透性演化是地下煤提取和煤层气剥削的重要性。本文通过在深煤层中的原位采矿诱导的应力状态模拟进行了煤渗透速度的实验室研究。煤的渗透率由分数衍生瞬态脉冲法估算。并且基于能量进化研究了煤的整个变形和失效过程,之后基于累积耗散能量来定义改性损伤变量。此外,渗透性的进化具有损伤变量,表明耗散的能量密度和产量后阶段的损伤变量增加。渗透性在应力诱导的压实过程中减少,并且在膨胀开始后开始增加。结果发现,渗透性似乎是与压实阶段中的损伤变量的负电力相关,而扩张后观察到正电力关系。此外,建议渗透性和基于能量的损伤变量的相关公式,以考虑采矿深度对煤的渗透性的影响。

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