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首页> 外文期刊>Marine and Petroleum Geology >Numerical analysis of gas production from reservoir-scale methane hydrate by depressurization with a horizontal well: The effect of permeability anisotropy
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Numerical analysis of gas production from reservoir-scale methane hydrate by depressurization with a horizontal well: The effect of permeability anisotropy

机译:用水平阱减压储层甲烷水合物的气体生产数值分析:渗透性各向异性的影响

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摘要

Methane hydrate (MH) is regarded as one of the potential and substantial energy resources. The permeability of hydrate-bearing layer (HBL) can potentially influence heat and mass transfer during hydrate dissociation by depressurization. In this study, a reservoir-scale MH model was constructed to investigate the effect of permeability anisotropy on gas production behaviors by depressurization with a horizontal well. The numerical results indicate that permeability anisotropy can initially negatively influence the hydrate dissociation and gas production, but later promote the process. Meanwhile, permeability anisotropy can lead to an increase of ratio of gas phase to total production and gas-to-water ratio during long-term gas production. Moreover, permeability anisotropy can enhance the horizontal flow and the dissociation reaction in the top part of the HBL for a long period, but also leads to an increase of accumulated free gas in the reservoir. Furthermore, the comparison of horizontal well production and vertical well production indicates that the horizontal well can increase the gas production by one order of magnitude than that of vertical well during a production period of 360 days, and permeability anisotropy appears to have less effect on gas production in the initial short stage when using the vertical well.
机译:甲烷水合物(MH)被认为是潜在和大量能源资源之一。通过减压化,水合物轴承层(HBL)的渗透率可能会影响水合物解离过程中的热量和传质。在该研究中,构建了储层标度MH模型,以研究渗透性各向异性对气体生产行为的影响,通过水平井减压。数值结果表明,渗透性各向异性最初可以对水合物解离和天然气产生产生负面影响,但后来促进该方法。同时,渗透性各向异性可能导致长期气体生产过程中的气相与总产量和燃气率的比例。此外,渗透性各向异性可以增强HBL的顶部长时间的水平流动和解离反应,但也导致储存器中积聚的自由气体增加。此外,水平井生产和垂直井产量的比较表明水平井可以在360天的生产期间通过垂直井的速度增加一个级的产气量,并且渗透性各向异性似乎对气体影响较小使用垂直井时初始短阶段的生产。

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