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Dimensionality reduction for production optimization using polynomial approximations

机译:使用多项式逼近进行生产优化的降维

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The objective of this paper is to introduce a novel paradigm to reduce the computational effort in waterflooding global optimization problems while realizing smooth well control trajectories amenable for practical deployments in the field. In order to overcome the problems of slow convergence and non-smooth impractical control strategies, often associated with gradient-free optimization (GFO) methods, we introduce a generalized approach which represent the controls by smooth polynomial approximations either by a polynomial function or by a piecewise polynomial interpolation, which we denote as function control method (FCM) and interpolation control method (ICM), respectively. Using these approaches, we aim to optimize the coefficients of the selected functions or the interpolation points in order to represent the well-control trajectories along a time horizon. Our results demonstrate significant computational savings, due to a substantial reduction in the number of control parameters, as we seek the optimal polynomial coefficients or the interpolation points to describe the control trajectories as opposed to directly searching for the optimal control values (bottom hole pressure) at each time interval. We demonstrate the efficiency of the method on two and three-dimensional models, where we found the optimal variables using a parallel dynamic-neighborhood particle swarm optimization (PSO). We compared our FCM-PSO and ICM-PSO to the traditional formulation solved by both gradient-free and gradient-based methods. In all comparisons, both FCM and ICM show very good to superior performances.
机译:本文的目的是介绍一种新颖的范例,以减少水驱全局优化问题中的计算工作量,同时实现适用于该领域实际部署的平滑井控制轨迹。为了克服通常与无梯度优化(GFO)方法相关的慢收敛和非平滑不切实际的控制策略的问题,我们引入了一种通用方法,该方法通过多项式函数或多项式的平滑多项式逼近来表示控制。分段多项式插值,分别称为函数控制方法(FCM)和插值控制方法(ICM)。使用这些方法,我们旨在优化所选函数或插值点的系数,以表示沿时间范围的井控轨迹。我们的结果表明,由于我们寻求最佳多项式系数或内插点来描述控制轨迹,而不是直接搜索最佳控制值(井底压力),因此控制参数的数量大大减少,可节省大量计算量在每个时间间隔。我们在二维和三维模型上证明了该方法的有效性,其中我们使用并行动态邻域粒子群优化(PSO)找到了最佳变量。我们将FCM-PSO和ICM-PSO与通过无梯度法和基于梯度法解决的传统配方进行了比较。在所有比较中,FCM和ICM均显示出非常出色的性能。

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