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Laboratory Investigation of Sweeping Efficiency By Multiple Horizontal Wells CO2 huff and Puff in Fault-Block Reservoirs with an Edge Aquifer

机译:边缘含水层故障阻滞储层中多水平井CO2 Huff和Puff的实验室调查

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Water coning constrains the effective development of fault-block reservoirs by horizontal wells.CO2 huff and puff from field cases prove to be effective in water control and oil stimulation.However,gas sweeping efficiency varies due to geological complexity and unclear oil-water interaction.Therefore,CO2 huff and puff by multiple horizon wells needs to be optimized for a better sweep efficiency.A physical model similar to a fault-block reservoir with edge aquifer and reservoir dip was devised.Three horizontal wells were deployed according to the distance from the aquifer.CO2 huff and puff experiments were conducted to investigate sweeping results of the selection of injecting well,combination of injection wells within the model.In addition,one numerical model corresponding to the physical one was built and numerical experiments were carried out to quantify the gas sweeping efficiency.The simulation results show that the sweeping effect decreased with the increase in the distance from the aquifer as CO2 was injected from one horizontal well.Furthermore,when two optimized horizontal wells huffed the similar amount of CO2,gas sweeping efficiency improved: A higher drop in water cut (34.26% to 33.53%),more oil recovery increase (15.38% to 17.59%),and a lager gas sweeping volume (33.56%) to 24.66%) were obtained in the simulation experiments.It was concluded that CO2 sweeping efficiency could be further improved within the same gas volume by horizontal wells optimization.Both physical and numerical conceptional model of fault-block reservoir was devised.And the improved CO2 sweeping efficiency by multiple horizontal wells CO2 huff and puff offers theoretical reference for field application.
机译:水从场情况下由水平wells.CO2吞吐圆锥约束断块油藏的有效的发展证明可有效地控制水和油stimulation.However,扫气效率由于地质复杂性和不清晰油水相互作用而变化。因此,CO2吞吐并且由多个地平线井需要粉扑为类似于边缘含水层和储层浸断块贮存器中的更好的扫描efficiency.A物理模型进行优化是devised.Three水平井是根据从所述的距离展开aquifer.CO2吞吐进行实验以研究model.In加成内注入井,注入井的组合的选择的扫结果,对应于所述物理一个一个数值模型是建立和数值进行实验以量化扫气效率。模拟结果表明,该清扫效果与从t的距离的增加而降低他含水层如CO2从一个水平well.Furthermore,注射时两种优化水平井吓CO 2的类似量,扫气效率改进:在含水(34.26%至33.53%),更采收率增加的较高压降(15.38在模拟获得%至17.59%),和贮藏啤酒扫气体积(33.56%),以24.66%)experiments.It得出的结论是CO2清扫效率可以进一步相同的气体体积内通过水平井optimization.Both物理改善和容错块储存器的数值概念性模型是devised.And改进CO2扫由多个水平井CO2吞吐提供了现场应用理论参考效率。

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