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Optimal control of polymer flooding injection under nonlinear inequality constraints

机译:非线性不等式约束下聚合物驱的最优控制

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摘要

In order to implement the exploration schemes of polymer flooding economically, the optimal control problem (OCP) is investigated to determine the best injection strategies. The performance criterion is chosen as profit grained from enhanced oil recovery, and the average cost is considered as a nonlinear inequality constraint. The OCP is governed by a distributed parameter system (DPS), which is described by two-dimensional (2-D) fluid equations in porous media. A control vector parameterization (CVP) based approach is presented for solving the OCP numerically and the nonlinear inequality constraint is handled by penalty function method. An example of a 2-D polymer flooding process is solved demonstrating the effectiveness of the given method.
机译:为了经济地实施聚合物驱的勘探方案,研究了最佳控制问题(OCP),以确定最佳的注入策略。选择性能标准作为从提高采油量中获利的利润,并且将平均成本视为非线性不平等约束。 OCP由分布式参数系统(DPS)控制,该参数系统由多孔介质中的二维(2-D)流体方程式描述。提出了一种基于控制矢量参数化(CVP)的数值求解OCP的方法,并通过罚函数法处理了非线性不等式约束。解决了二维聚合物驱过程的一个例子,证明了给定方法的有效性。

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