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Finite element simulation on percolation of low permeability reservoir with permeability anisotropy 被引量:2

Finite element simulation on percolation of low permeability reservoir with permeability anisotropy
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摘要 In low permeability porous media which permeability anisotropy is ubiquitous,the percolation of fluid no longer follows linear Darcy’s Law.Oil-water two phase flow equation of low permeability reservoir with permeability anisotropy is established based on generalized Darcy’s law and starting pressure gradient,corresponding finite element program is developed and simulated based on the Finite Element Program Generator system (FEPG).The results show that energy-gathering exists in the flow event of flowing area front in low permeability reservoir.In the process of energy-gathering,the flow velocity changed little but increased rapidly as soon as the pressure gradient exceeded the starting pressure gradient of the reservoir,then gradually stabilized.The greater the starting pressure gradient is,the greater the near wellbore pressure drop is,the smaller the area influenced by the reservoir pressure changes caused by water injection and oil recovery.The greater the starting pressure gradient is,the lower the water saturation in same point of the reservoir is,the smaller the water flood swept area is.There will be more difficulties in water injection to the same extent. In low permeability porous media which permeability anisotropy is ubiquitous, the percolation of fluid no longer follows linear Darcy's Law. Oil-water two phase flow equation of low permeability reservoir with per- meability anisotropy is established based on generalized Darcy's law and starting pressure gradient, correspond- ing finite element program is developed and simulated based on the Finite Element Program Generator system (FEPG). The results show that energy-gathering exists in the flow event of flowing area front in low permeabili- ty reservoir. In the process of energy-gathering, the flow velocity changed little but increased rapidly as soon as the pressure gradient exceeded the starting pressure gradient of the reservoir, then gradually stabilized. The greater the starting pressure gradient is, the greater the near wellbore pressure drop is, the smaller the area in- fluenced by the reservoir pressure changes caused by water injection and oil recovery. The greater the starting pressure gradient is, the lower the water saturation in same point of the reservoir is, the smaller the water flood swept area is. There will be more difficulties in water injection to the same extent.
出处 《Global Geology》 2012年第4期265-269,共5页 世界地质(英文版)
关键词 渗透率各向异性 低渗透多孔介质 有限元模拟 油藏渗流 启动压力梯度 通流面积 能量收集 低渗透油藏 anisotropy low permeability percolation finite element simulation
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