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Experimental study on the gas phase permeability of methane hydrate-bearing clayey sediments

机译:含甲烷水合物黏土沉积物气相渗透性的实验研究

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The permeability of hydrate-bearing sediment is one of the important parameters that influences the gas production rate of the hydrate reservoirs. In this study, a series of experiments were performed to investigate the gas phase permeability of kaolin clay with different hydrate saturations (0%, 2.59%, 4.23%, 11.44%, 16.84%, 22.91%, 27.57%, 28.85%, 34.16%, and 40.46%) at effective axial stresses of 1 MPa, 3 MPa. The results indicated that the gas phase permeability of the kaolin clay firstly decreases and then increases with the increase of hydrate saturation, due to the effect of blockage of hydrate particles and the increase of pores in inter-aggregate zones during methane hydrate formation. And there is a critical hydrate saturation that the gas phase permeability of hydrate-bearing clayey specimen equals to that of pure clayey specimen. Furthermore, the gas phase permeability of hydrate-bearing clayey specimens under high effective axial stresses is less than that under low effective axial stresses, due to the compaction of pore spaces and pore throats. And the stress sensitive index clearly increases with the increase of hydrate saturation, and the increase tendency become gentle when the hydrate saturation higher than 30%. (C) 2016 Elsevier B.V. All rights reserved.
机译:含水合物沉积物的渗透率是影响水合物气藏产气率的重要参数之一。在这项研究中,进行了一系列实验以研究不同水合物饱和度(0%,2.59%,4.23%,11.44%,16.84%,22.91%,27.57%,28.85%,34.16%)的高岭土的气相渗透性。和40.46%)的有效轴向应力分别为1 MPa和3 MPa。结果表明,在甲烷水合物形成过程中,由于水合物颗粒的阻塞和集聚区间孔隙的增加,高岭土的气相渗透率先随水合物饱和度的增加而减小,然后增加。含水合物黏土样品的气相渗透率等于纯黏土样品的气相渗透率。此外,由于孔隙空间和孔喉的致密性,在高有效轴向应力下含水合物黏土样品的气相渗透率小于在低有效轴向应力下的气相渗透率。应力敏感指数随着水合物饱和度的增加而明显增加,而当水合物饱和度大于30%时,应力增加指数趋于平缓。 (C)2016 Elsevier B.V.保留所有权利。

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