A modified Lattice-Boltzmann method is proposed by considering the Klinkenberg effect and adsorbabilitydesorbability for the purpose of simulating methane gas seepage in fissured coal. The results show that the Klinkenberg effect has a little influence on methane gas seepage in fissured coal, so it can be neglected in engineering computations for simplicity. If both the Klinkenberg effect and the adsorbability-desorbability are considered, the Klinkenberg influence on gas pressure decreases as the Darcy coefficient increases. It is found by gas drainage simulations that near a drainage hole, the effect of adsorption and desorption cannot be neglected, and the location of the drainage hole has a great influence on drainage efficient ๐ when the hole is just located at the mid-zone of the coal seam, ๐ is 0.691808; when the hole is excursion down to 1.0 m from the mid-zone of coal seam, ๐ decreases to 0.668631; when the hole is excursion up or down to 2.0 m from the mid-zone of coal seam, ๐ decreases to 0.632917. The simulations supply an effective approach for optimizing the gas drainage hole location.
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