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Experimental Study of Impact of Creep on Coal Permeability

机译:蠕变对煤渗透影响的实验研究

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Drainage of fluids (hydrocarbon or water) from coal seam via drainage boreholes brings about compaction creep and permanent loss of porosity and permeability over time. In this paper, the impact of creep (time-dependent deformation) on coal permeability has been experimentally studied using a triaxial rig. The bituminous coal sample used for the triaxial creep test was excavated from Bowen Basin, Australia. Methane gas was used in the triaxial test to investigate the effect of creep triggered by pore pressure depletion on permeability during desorption under constant hydrostatic and axial stresses. The results show that the creep induced to coal results in a significant drop in coal permeability when approximately zero creep rate is reached. Permeability measurements show that drop of pore pressure in a step manner from 2.5 MPa to 1.5 MPa, I MPa, and 0.5 MPa leads to decrease in permeability loss ratio of 16.8%, 6% and 5.4% for each step change. Permeability rebound was not obtained in our experiments for this range of pressures. The experimental results of this study can shed light on complexity of interaction of gas transport and timedependent deformation of coal during gas drainage.
机译:通过排水钻孔从煤层中排出流体(烃或水)带来压实蠕变和永久性损失随时间随时间的渗透性和渗透性。在本文中,使用三轴钻井平台进行了实验研究了蠕变(时间依赖变形)对煤渗透性的影响。用于三轴蠕变试验的烟煤样品从澳大利亚Bowen Basin挖掘出来。在三轴试验中使用甲烷气体以研究蠕变在恒定静压和轴向应力下解吸期间渗透率蠕变引发的蠕变触发的影响。结果表明,当达到零次蠕变率时,煤的蠕变导致煤的显着下降。渗透性测量表明,孔隙压力从2.5MPa为2.5MPa,IMPa和0.5MPa导致渗透率降低16.8%,6%和5.4%,每个步骤变化。在我们的实验中没有获得渗透率反弹,在这种压力范围内没有获得。本研究的实验结果可以阐明气体传输的互动和煤气排水期间煤的相互作用的复杂性。

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