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首页> 外文期刊>The Journal of Canadian Petroleum Technology >Design of Solvent-Assisted SAGD Processes in Heterogeneous Reservoirs Using Hybrid Optimization Techniques
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Design of Solvent-Assisted SAGD Processes in Heterogeneous Reservoirs Using Hybrid Optimization Techniques

机译:基于混合优化技术的非均质油藏溶剂辅助SAGD工艺设计

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摘要

Numerous steam-assisted gravity-drainage (SAGD) optimization studies published in the literature combined numerical simulation with graphical or analytical techniques for design and performance evaluation. Efforts have integrated the simulation exercise with global optimization algorithms. Some studies focused on optimization of cumulative steam/oil ratio (cSOR) in SAGD by altering steam-injection rates, while others focused on optimization of net cumulative energy/oil ratio (cEOR) in solvent-additive SAGD by altering injection pressures and fraction of solvent in the injection stream. Several studies also considered total project net-present-value (NPV) calculation by changing total project area, capital-cost intensities, solvent prices, and risk factors to determine the well spacing and drilling schedule. Optimization techniques commonly used in those studies were scattered search, simulated annealing, and genetic algorithm (GA). However, applications of hybrid GA were rarely found. In this paper, we focused on optimization of solvent-assisted SAGD using various GA implementations. In our models, hexane was selected to be coinjected with steam. The objective function, defined on the basis of cSOR and recovery factor, was optimized by changing injection pressures, production pressures, and injected solvent/steam ratio. Techniques, including orthogonal arrays (OA) for experimental design (e.g., Taguchi's arrays) and proxy models for objective-function (F) evaluations, were incorporated with the GA method to improve computational and convergence efficiency. Results from these hybrid approaches revealed that an optimized solution could be achieved with less central-processing-unit time (e.g., fewer number of iterations) compared with the conventional GA method. Sensitivity analysis was also conducted on the choice of proxy model to study the robustness of the proposed methods. To investigate the effects of heterogeneity in the design process, optimization of solvent-assisted SAGD was performed on various synthetic heterogeneous reservoir models of porosity, permeability, and shale distributions. Our results highlight the potential application of the proposed techniques in other solvent-enhanced heavy-oil-recovery processes.
机译:文献中发表的许多蒸汽辅助重力排水(SAGD)优化研究都将数值模拟与图形或分析技术相结合,以进行设计和性能评估。已经将模拟练习与全局优化算法集成在一起。一些研究着重于通过改变蒸汽注入速率来优化SAGD中的累积汽/油比(cSOR),而另一些研究着重于通过改变注入压力和比例来优化溶剂添加剂SAGD中的净累积能量/油比(cEOR)。注入流中的溶剂。几项研究还通过更改项目总面积,资本成本强度,溶剂价格和风险因素来确定总井净值和钻井进度,从而考虑了总项目净现值(NPV)的计算。这些研究中常用的优化技术是分散搜索,模拟退火和遗传算法(GA)。但是,很少发现混合遗传算法的应用。在本文中,我们专注于使用各种GA实现方案对溶剂辅助的SAGD进行优化。在我们的模型中,选择己烷与蒸汽共注入。通过更改进样压力,生产压力和进样溶剂/蒸汽比,优化了基于cSOR和回收率定义的目标函数。遗传算法结合了用于实验设计的正交阵列(OA)和例如目标函数(F)评估的代理模型等技术,以提高计算和收敛效率。这些混合方法的结果表明,与常规GA方法相比,可以用更少的中央处理单元时间(例如,更少的迭代次数)来实现优化的解决方案。还对代理模型的选择进行了敏感性分析,以研究所提出方法的鲁棒性。为了研究非均质性在设计过程中的影响,在各种孔隙度,渗透率和页岩分布的综合非均质油藏模型中对溶剂辅助的SAGD进行了优化。我们的结果突出了所提出的技术在其他溶剂增强型重油回收工艺中的潜在应用。

著录项

  • 来源
    《The Journal of Canadian Petroleum Technology》 |2012年第6期|437-448|共12页
  • 作者单位

    School of Mining and Petroleum Engineering at the University of Alberta;

    School of Mining and Petroleum Engineering at the University of Alberta;

    School of Mining and Petroleum Engineering at the University of Alberta;

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