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An improved solution to estimate relative permeability in tight oil reservoirs

机译:一种估计致密油储层相对渗透率的改进解决方案

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The relative permeability is a critical property to predict field performance by reservoir numerical simulation. However, determining the relative permeability curve by experiments is time consuming and difficult for tight oil reservoirs due to the extremely low permeability. Therefore, many studies focus on the analytical solution to determine the relative permeability curve. However, no exiting solutions take the effect of boundary layer, Jamin and wettability into account. This results in overestimated results because boundary layer is even up to 60?% of the throat and throat to pore ratio reaches up to 400 in tight oil reservoirs. Therefore, an improved analytical solution is desirable to solve these two problems. In this paper, based on the collected experimental results, the Purcell’s solution is modified and an improved solution considering the effect of boundary layer, Jamin and wettability is developed. Compared to the results of the relative permeability experiments, the improved solution is more accurate and reliable. Because the throat distribution of the tight oil reservoir in Daqing Field is narrower than that in Changqing Field, the productivity of the tight oil reservoir in Daqing Field is less than that in Changqing Field at first. However, the breakthrough time of the tight oil reservoir in Daqing Field is longer than that in Changqing Field. This improved solution can only be applied to tight oil reservoirs, because boundary layer and Jamin have little effect on the flow behavior in conventional reservoirs.
机译:相对渗透率是通过储层数值模拟预测油田性能的关键属性。然而,由于渗透率极低,因此通过实验确定相对渗透率曲线既费时又困难。因此,许多研究集中在确定相对渗透率曲线的解析解上。但是,没有现有解决方案考虑边界层,贾明和润湿性的影响。由于边界层甚至达到了喉咙的60%,而且在致密油藏中,喉孔比高达400,所以这导致了高估的结果。因此,需要改进的分析解决方案来解决这两个问题。在本文中,基于收集到的实验结果,对赛尔溶液进行了修改,并考虑了边界层,贾明和润湿性的影响,开发了一种改进的解决方案。与相对渗透率实验的结果相比,改进后的解决方案更加准确可靠。由于大庆油田致密油藏的喉道分布较长庆油田窄,因此大庆油田致密油库的产能起初比长庆油田低。但是,大庆油田致密油储层的突破时间要长于长庆油田。这种改进的解决方案只能应用于致密油藏,因为边界层和Jamin对常规油藏的流动行为影响很小。

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