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Low-Velocity Non-Linear Numerical Simulation in Tight Sandstone Oil Reservoirs

机译:紧砂岩油藏中低速非线性数值模拟

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Micro and nano throats are widely distributed in tight sandstone oil reservoirs and non-linear flow characteristics are obvious. However, no existing non-linear mathematical models and numerical simulations account for the effect of throat radius heterogeneity and fluid on non-linear flow characteristics. Additionally, they aslso do not account for the mutation of relative permeability curve resulted from nonlinear flow characteristics. Therefore, in this paper, based on the method to characterize the non-linear flow characteristics and to calculate the relative permeability with non-linear flow characteristics, non-linear mathematical model is built. Then the numerical simulation module is developed. It is found that because of the effect of non-linear flow characteristics and quasi threshold pressure gradient, the early oil production of conventional model is largest and that of quasi threshold pressure gradient (QTPG) model and non-linear model are the same. Additionaly, QTPG model overestimates the threshold pressure gradient. Therefore, the sweep and cumulative oil production of conventional model is larger than that of non-linear model, larger than that of QTPG model. Becasuse the middle of the production well and injection well has the minimal pressure gradient, it has the minimal effective permeability. Accounting for the effect of non-linear flow characteristics and permeability stress sensitivity on relative permeability, the sweep area of injected water is small. Although the permeability is the same, the non-linear flow characteristics and permeability stress sensitivity are more obvious when throat distribution is narrower. As a result, the effective permeability is lower and sweep area become smaller. Therefore, oil rate and cumulative oil production is lower.
机译:微型和纳米喉部广泛分布在紧密的砂岩油藏和非线性流动特性明显。然而,没有现有的非线性数学模型和数值模拟对于喉部半骨质性和流体对非线性流动特性的影响。另外,它们的ASLSO不考虑由非线性流动特性引起的相对渗透曲线的突变。因此,在本文中,基于该方法来表征非线性流动特性并计算具有非线性流动特性的相对渗透性,构建了非线性数学模型。然后开发了数值模拟模块。结果发现,由于非线性流动特性和准阈值压力梯度的影响,传统模型的早期油生产是最大的,并且准阈值压力梯度(QTPG)模型和非线性模型的早期油生产是相同的。辅助QTPG模型高估阈值压力梯度。因此,传统模型的扫描和累积油生产大于非线性模型,大于QTPG模型的型号。使中间的生产良好,注射孔具有最小的压力梯度,它具有最小的有效渗透性。占非线性流动特性和渗透性应力敏感性对相对渗透性的影响,扫描水的扫描面积小。虽然渗透性是相同的,但是当喉部分布较窄时,非线性流动特性和渗透性应力敏感性更加明显。结果,有效的渗透率较低,扫描区域变小。因此,油速和累积油生产较低。

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