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Research on Prediction of Instability Failure for Gassy Coal Sample in Different Confining Pressure Based on Microseism

机译:基于微震的瓦斯煤样在不同围压下失稳预测的研究

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According to the rock failure damage theories and the gas-solid coupling method, used RFPA2D—GasFlow soft code to study the characteristics of microseism in time and space for gassy coal sample in different confining pressure. It is shown that there is some microseism precursory before main shock. Basing on the characteristics of microseism precursory events amount in time can be warned in advance, and basing on the characteristics of microseism precursory events produced by tension stress in space ,there is can divide potential failure danger zone. It is shown that the divided results for potential failure danger zone are exactly, and with the increment of confining pressure, the accuracy of divided results on potential failure danger zone become higher. It is found that the potential failure danger zone consistent with crack initiatory zone by contrasted potential failure danger zone to crack development process, and with the increment of confining pressure, the consistency become higher.
机译:根据岩石破坏破坏理论和气固耦合方法,利用RFPA2D-GasFlow软代码研究了不同围压下含气煤样的时空微震特征。结果表明,主震前存在一些微震先兆。根据微震先兆事件的特征可以及时预警,而基于空间拉应力产生的微震先兆事件的特征,则可以划分潜在的失效危险区。结果表明,潜在失效危险区域划分结果准确,随着围压的增大,潜在失效危险区域划分结果的准确性更高。通过将潜在失效危险区与裂纹发展过程进行对比,发现潜在失效危险区与裂纹引发区一致,并且随着围压的增加,稠度更高。

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