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Robust Constrained Optimization of Short- and Long-Term Net Present Value for Closed-Loop Reservoir Management

机译:闭环水库管理的短期和长期净现值的鲁棒约束优化

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摘要

In this paper, we develop an efficient algorithm for production optimization under linear and nonlinear constraints and an uncertain reservoir description. The linear and nonlinear constraints are incorporated into the objective function using the augmented Lagrangian method, and the bound constraints are enforced using a gradient-projection trust-region method. Robust long-term optimization maximizes the expected life-cycle net present value (NPV) over a set of geological models, which represent the uncertainty in reservoir description. Because the life-cycle optimal controls may be in conflict with the operator's objective of maximizing short-time production, the method is adapted to maximize the expectation of short-term NPV over the next 1 or 2 years subject to the constraint that the life-cycle NPV will not be substantially decreased. The technique is applied to synthetic reservoir problems to demonstrate its efficiency and robustness. Experiments show that the field cannot always achieve the optimal NPV using the optimal well controls obtained on the basis of a single but uncertain reservoir model, whereas the application of robust optimization reduces this risk significantly. Experimental results also show that robust sequential optimization on each short-term period is not able to achieve an expected life-cycle NPV as high as that obtained with robust long-term optimization.
机译:在本文中,我们开发了一种在线性和非线性约束以及不确定油藏描述下进行生产优化的有效算法。使用增强拉格朗日方法将线性和非线性约束条件合并到目标函数中,并使用梯度投影信任区域方法强制执行约束条件。稳健的长期优化可在一组地质模型上最大化预期的生命周期净现值(NPV),这代表了储层描述的不确定性。由于生命周期的最佳控制可能会与运营商实现短期生产最大化的目标相抵触,因此该方法适用于在未来1或2年内最大化对短期NPV的期望,但要遵循以下限制:周期净现值不会大幅降低。该技术被应用于合成油藏问题,以证明其有效性和鲁棒性。实验表明,使用基于单个但不确定的油藏模型获得的最优井控方法,油田并不能始终获得最优NPV,而稳健优化的应用显着降低了这一风险。实验结果还表明,在每个短期周期上进行鲁棒的顺序优化都无法获得与通过鲁棒的长期优化获得的预期寿命周期NPV一样高的预期寿命周期。

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  • 来源
    《SPE journal》 |2012年第3期|p.849-864|共16页
  • 作者

    C. Chen; G. Li; A.C. Reynolds;

  • 作者单位

    Shell Bellaire Technology Center;

    The University of Tulsa The University of Tulsa Petroleum Reservoir Exploitation Projects (TUPREP);

    The University of Tulsa;

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  • 正文语种 eng
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