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Compositional and Geomechanical Effects in Huff-n-Puff Gas Injection IOR in Tight Oil Reservoirs

机译:紧密储油液中Huff-N-Puff气体注入IOR中的组成和地质力学效应

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Lab experiments,field pilots and numerical modeling focusing on fluid flow aspects have indicated that gas injection in tight oil reservoirs is technically feasible.Several operators have conducted pilot tests in the Eagleford and Bakken shales for a Huff-n-Puff IOR strategy with mixed results.Our objective in this work was to study the impact of geomechanical effects,such as permeability changes and opening and closure of fractures during injection and production,on such huff-n-puff processes.We developed a fully coupled geomechanical compositional reservoir simulator to model Huff-n-Puff gas injection for improving liquid recovery in tight oil reservoirs.The simulator solves component mass balances,a suitable equation of state and pressure equations which are coupled with rock deformation and calculates stress changes due to both poroelastic(pressure changes)and mechanical(fracture opening and closing)effects.The phase behavior of the injected gas with a specified composition(which is different from the in-situ reservoir fluid)is accounted for using phase stability and flash calculation algorithms.We present results from simulations using representative rock and fluid data from an unconventional reservoir and observe the following trends using our simulation studies:(a)Selection of the gas injection rate is very important in order to achieve a substantial pressure increase during the injection period.(b)Geomechanical effects,permeability decrease during increasing effective stress and permeability increase during decreasing effective stress has a significant impact on overall oil recovery.(c)Huff-n-Puff IOR will be more successful in certain reservoirs than in others depending on the composition of the reservoir fluid,saturation pressure,producing GOR and geomechanical reservoir rock properties.Our simulation results provide operators with significant new insights on the design of gas injection IOR processes.It is shown that geomechanical effects during huff-n-puff cycles have a significant impact on oil recovery,particularly if natural fractures and planes of weakness are present.Specifically,several design questions can be answered such as(a)gas injection rates and volumes(b)impact of injection fluid and reservoir fluid composition(c)selection of candidate reservoirs(d)impact of operating bottomhole temperature and pressure.
机译:实验室实验,领域飞行员和重点在流体流动方面的数值模型表明,封闭油藏的气体注入是技术上可行的。官方运营商在Eagleford和Bakken Shales进行了飞行员测试,以获得混合结果的Huff-N-Puff IOR策略。在这项工作中的目的是研究地质力学效应的影响,如注射和生产过程中的渗透性变化和打开和关闭和关闭,在这种浮游生物的过程中。我们开发了一个完全耦合的地质力学成分储层模拟器模拟用于提高液体油藏液体回收的Huff-N-Puff气体喷射器。模拟器解决了部件质量平衡,与岩石变形相结合的状态和压力方程的合适方程,并根据孔弹性(压力变化)来计算应力变化机械(骨折开口和闭合)效应。注射气体与指定组合物的相行为(其中算用于使用阶段稳定性和闪光计算算法的不同。我们使用来自非传统水库的代表性岩石和流体数据的模拟和使用我们的仿真研究观察以下趋势的仿真:(a)选择气体注入速率非常重要,以便在注射期间实现大幅增加。(b)地质力学效应,在增加有效应力和渗透率期间在降低有效压力期间增加的渗透性对整体漏出的影响显着影响。( c)在某些水库中将更加成功,而不是其他水库,饱和压力,生产GOR和地质力学水库岩石属性的内容将更加成功。我们的仿真结果提供了对设计有重大新见解的运营商气体喷射IOR过程。显示Huff-N-Puf期间的地质力学效应F循环对石油回收产生重大影响,特别是如果存在的自然骨折和弱势的平面。特殊地,可以回答若干设计问题,例如(a)注射液和贮存器流体组合物的影响(a)气体注入速率和体积(b)的影响(c)选择候选储层(d)井井井温度和压力的影响。

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