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Optimization of the WAG Injection Process

机译:WAG注射工艺的优化

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摘要

Availability of hydrocarbon gases at the field makes it attractive for gas-based enhanced oil recovery (EOR) methods such as water alternating gas (WAG) injection. Optimization of EOR methods requires too many simulation runs, which are time consuming and expensive. Therefore, developing a proxy model, which emulates simulator outputs, is considered as an appropriate alternative technique. In this work, effects of composition changes of injection gas, WAG ratio, and slug size on produced oil and water were investigated. In addition, the optimum value of the previous parameters, including some constraints, are presented using response surface methodology. Experimental design is also applied to construct different polynomial regression models as proxy models for a sector of an Iranian oil reservoir under the WAG injection scenario. A new workflow is introduced for optimization of the WAG parameters, for which all effecting parameters are changing simultaneously.
机译:烃类气体在现场的可用性使其对基于气体的强化采油(EOR)方法(如注水交替气(WAG)注入)具有吸引力。优化EOR方法需要太多的模拟运行,这既耗时又昂贵。因此,开发模拟模拟器输出的代理模型被认为是一种适当的替代技术。在这项工作中,研究了注入气体的组成变化,WAG比例和段塞尺寸对产出的油和水的影响。另外,使用响应面方法给出了先前参数的最优值,包括一些约束条件。实验设计还被用于构造不同的多项式回归模型,作为在WAG注入情景下伊朗石油储藏区的代理模型。引入了用于优化WAG参数的新工作流程,为此,所有影响参数均同时更改。

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