李少刚, 张广辉, 邓志刚. 瓦斯对冲击倾向性能量指标影响的数值模拟[J]. 煤矿安全, 2019, 50(6): 6-10.
    引用本文: 李少刚, 张广辉, 邓志刚. 瓦斯对冲击倾向性能量指标影响的数值模拟[J]. 煤矿安全, 2019, 50(6): 6-10.
    LI Shaogang, ZHANG Guanghui, DENG Zhigang. Numerical Simulation Study on Influence of Gas on Energy Index of Bursting Tendency[J]. Safety in Coal Mines, 2019, 50(6): 6-10.
    Citation: LI Shaogang, ZHANG Guanghui, DENG Zhigang. Numerical Simulation Study on Influence of Gas on Energy Index of Bursting Tendency[J]. Safety in Coal Mines, 2019, 50(6): 6-10.

    瓦斯对冲击倾向性能量指标影响的数值模拟

    Numerical Simulation Study on Influence of Gas on Energy Index of Bursting Tendency

    • 摘要: 为探究瓦斯对煤冲击倾向性能量指标的影响,基于含瓦斯煤的受力特点,建立含瓦斯煤样气-固耦合控制方程,并植入COMSOL数值模拟软件,开展瓦斯对弹性能量指数和冲击能量指数的影响研究。结果表明:伴随瓦斯压力的增加,煤样中塑性应变区域扩大,且塑性应变程度有所增加,煤样储存弹性应变能的能力下降;煤样变形破坏过程中消耗能量增加,煤样完全破坏后盈余能量减少,导致冲击能量指数和弹性能量指数降低;瓦斯弱化了煤的冲击倾向性,在含瓦斯煤层冲击倾向性鉴定和冲击危险性评价过程中应充分考虑瓦斯对煤冲击特性的影响。

       

      Abstract: To study the influence of gas on the energy index of coal rock bursting tendency, based on the force characteristics of coal containing gas,the gas-solid coupling control equation is established, and the influence of gas on elastic energy index and impact energy index was studied by using COMSOL numerical simulation software. The result shows that with the increase of gas pressure, the plastic strain area in coal sample is enlarged, the plastic strain value increases, the ability of the coal sample to keep the elastic strain energy drops. In the process of deformation and failure, more energy is consumed, and the surplus energy is reduced when the coal sample is completely destroyed, the impact energy index and the elastic energy index are reduced. Gas weakens the rock burst tendency of coal in measuring the bursting tendency and evaluating the rock burst risk of coal containing gas seams, the influence of gas on the burst performance of coal seams should be taken into full consideration.

       

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