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- W2040802417 abstract "Abstract The similarities and differences in seepage flow evolution laws of CH 4 and CO 2 during complete stress–strain process of samples were comparatively analyzed. The results show that the seepage flow evolution laws of CH 4 and CO 2 are extremely similar during the stress–strain process, showing that the characteristic first decreased and then increased. A mathematical model was also established according to the relationship of seepage velocity and axial strain. However, due to the strong adsorption ability of CO 2 , the coal samples generated a more serious “Klinkenberg effect” under the condition of CO 2 . Owing to this, the CO 2 seepage flow resulted into occurrence of “stagnation” phenomenon during the late linear elastic stage II. In the strain consolidation stage III, the increment rate of CH 4 seepage velocity was significantly greater than that of CO 2 . In the stress descent stage IV, when the axial load reached the peak pressure of coal, the increment rates of CH 4 seepage velocity presented a turning point. But the changing rate of CO 2 seepage velocity still remained slow and a turning point was presented at one time after the peak of the strain pressure, which showed an obvious feature of hysteresis." @default.
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- W2040802417 date "2011-11-01" @default.
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- W2040802417 title "Seepage laws of two kinds of disastrous gas in complete stress–strain process of coal" @default.
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- W2040802417 doi "https://doi.org/10.1016/j.mstc.2011.06.023" @default.
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