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Homogeneous chaos basis adaptation for design optimization under uncertainty: Application to the oil well placement problem

机译:不确定性下优化设计的均匀混沌基础适应:在油井布置问题中的应用

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A new method is proposed for efficient optimization under uncertainty that addresses the curse of dimensionality as it pertains to the evaluation of probabilistic objectives and constraints. A basis adaptation strategy previously introduced by the authors is integrated into a design optimization framework that construes the optimization cost function as the quantity of interest and computes stochastic adapted bases as functions of design space parameters. With these adapted bases, the stochastic integrations at each design point are evaluated as low-dimensional integrals (mostly one dimensional). The proposed approach is demonstrated on a well-placement problem where the uncertainty is in the form of a stochastic process describing the permeability of the subsurface. An analysis of the method is carried out to better understand the effect of design parameters on the smoothness of the adaptation isometry.
机译:提出了一种在不确定性下进行有效优化的新方法,该方法解决了维数诅咒,因为它涉及概率目标和约束的评估。作者先前引入的基础适应策略已集成到设计优化框架中,该框架将优化成本函数视作感兴趣的数量,并计算随机适应基作为设计空间参数的函数。利用这些经过调整的基础,每个设计点的随机积分都被评估为低维积分(大部分为一维)。所提出的方法在井位问题上得到了证明,其中不确定性采用描述地下渗透率的随机过程的形式。对该方法进行了分析,以更好地理解设计参数对自适应等距线的平滑度的影响。

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