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首页> 外文期刊>Journal of natural gas science and engineering >Experimental investigation on the permeability, acoustic emission and energy dissipation of coal under tiered cyclic unloading
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Experimental investigation on the permeability, acoustic emission and energy dissipation of coal under tiered cyclic unloading

机译:分层循环卸料下煤的渗透性,声发射和能量耗散的实验研究

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Because of periodic disturbance during coal seam excavation and support, the surrounding rock is subjected to cyclic unloading-reloading. To study the effect of pressure-relief on coal fields during gas drainage and mining, the permeability, acoustic emission (AE) and energy dissipation properties of coal under tiered cyclic unloading were experimentally investigated. Permeability enhancement rate (PER), AE signal change rate and a damage variable were defined to describe this process. Hysteresis, memory and Felicity effects are revealed. These results show that, the step-wise increase of strains and permeability display a hysteresis effect under tiered cyclic unloading. The axial residual strain increases exponentially, while the radial residual strain increases as a quadratic function, and the PER increases. The AE signals show Kaiser effect when the unloading capacity is small. Conversely, the Felicity effect is displayed when the unloading capacity is large. The cumulative AE signal and the axial strain exhibit good synchronisation and memory characteristics. The dissipated energy increases as a quadratic function, and the developed damage variable also increases, the critical damage variable of coal failure is estimated to be D-c approximate to 0.8.
机译:由于煤层挖掘和支撑期间的周期性干扰,周围的岩石经受循环卸载重载。为研究燃气排水期间煤田对煤炭田地的影响,实验研究了层循环卸料下煤的渗透率,声发射(AE)和能量耗散性能。定义渗透性增强速率(PER),AE信号变化率和损伤变量来描述该过程。揭示了滞后,记忆和富集效应。这些结果表明,菌株和渗透率的逐步增加显示了分层循环卸载下的滞后效果。轴向残余应变呈指数增加,而径向残留应变随着二次函数的增加,并且每增加增加。当卸载容量小时,AE信号显示了kaiser效果。相反,当卸载容量大时,将显示富集效果。累积AE信号和轴向应变具有良好的同步和存储器特性。耗散的能量随着二次函数而增加,并且发育的损伤变量也增加,煤衰竭的临界损伤变量估计为D-C近似为0.8。

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