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Laboratory Study Phenomenon of Coal and Gas Outburst Based on a Mid-scale Simulation System

机译:基于中型模拟系统的煤与瓦斯突出实验室研究现象

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摘要

Outburst simulation experiments facilitate understanding coal and gas outburst in underground mining. With the help of the mid-scale simulation system, a model based on similitude principle, coal seam sandwiched by roof and floor, was constructed to conduct an outburst experiment. It had a three-dimensional size of 1500 mm × 600 mm × 1000 mm with 0.5 MPa gas pressure. The experimental procedures include specimen preparation, moulding, sealing, gas charging and adsorption, and completion. The outburst process was investigated by analyzing the gas pressure variation, temperature variation, outburst propagation velocity, particle size of outburst coal and energy transformation. During the experiment, each gas charging was accompanied with gas pressure or temperature fluctuation because of coal behavior of gas adsorption-desorption. The outburst propagation velocity was 17.2 m/s, obtained by a mass-weighted calculation of velocities of outburst coal. The small-size coal particles have a higher desorption rate and tend to participate in outburst process. According to energy conservation law, the energy forms of the outburst included elastic strain energy (Ee), gas expansion energy (Ep), internal energy of coal (ΔU), breakage work (W1), throwing out work (W2) and gas-flow loss energy (ΔE), and each was calculated respectively. Gas potential energy, including gas expansion energy and internal energy of coal, registered a larger percent and was far greater than the strain energy. And it can be the main factor influencing the occurrence of low-threshold outburst. The experimental system provides a feasible way to study the initiation and evolution of coal and gas outbursts.
机译:突出模拟实验有助于理解地下采矿中的煤与瓦斯突出。借助中尺度模拟系统,建立了基于相似性原理的煤层顶板与底板夹心模型,进行了突出试验。它的三维尺寸为1500 mm×600 mm×1000 mm,气压为0.5 MPa。实验程序包括样品制备,成型,密封,充气和吸附以及完成。通过分析瓦斯压力变化,温度变化,突出传播速度,突出煤的粒径和能量转化,研究了突出过程。在实验过程中,由于煤的气体吸附-解吸行为,每次充气都伴随着气压或温度波动。突出传播速度是通过质量加权计算的突出煤速度获得的,为17.2 coalm / s。小尺寸的煤颗粒具有较高的解吸速率,并且倾向于参与突出过程。根据节能法,突出的能量形式包括弹性应变能(Ee),瓦斯膨胀能(Ep),煤的内能(ΔU),破坏功(W1),抛掷功(W2)和瓦斯流动损失能量(ΔE),分别计算。瓦斯势能,包括瓦斯膨胀能和煤的内部能,占有较大的百分比,远大于应变能。它可能是影响低阈值爆发发生的主要因素。该实验系统为研究煤与瓦斯突出的发生和演化提供了一种可行的方法。

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