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首页> 外文期刊>Iranian Journal of Science and Technology. Transaction A, Science >Effective Workflow for Optimization of Intelligent Well Completions
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Effective Workflow for Optimization of Intelligent Well Completions

机译:优化智能井完井的有效工作流程

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Intelligent wells provide the ability for monitoring and control of downhole environment of the wells. Downhole monitoring is achieved through sensors while control is realized with downhole valves. Recovery from intelligent wells can be improved by proper selection of candidate wells/fields and optimizing the number, location and performance of the installed Interval Control Valves. Design criteria, however, suffer from incomplete understanding of the precise determination of these parameters, their interaction and combined effects. Having known the candidate well, we presented a new workflow to optimize the number, location and performance of Interval Control Valves as the main element of intelligent wells. This is a very computationally demanding and time consuming task; therefore a proxy model is developed and applied to speed up the process. Primary evaluations show that optimization of each parameter independently is not the best practice because of their interrelation and combined effects on objective function. An integrated optimization approach is therefore developed in which all the Interval Control Valves' parameters are optimized together during the process. Considerable improvement in cumulative oil production and control of produced water is achieved by applying this method on real field data.
机译:智能井提供了监视和控制井下环境的能力。井下监控通过传感器实现,而井下阀实现控制。通过适当选择候选井/场并优化已安装的间隔控制阀的数量,位置和性能,可以改善智能井的采收率。但是,设计标准对这些参数的精确确定,它们之间的相互作用和综合作用的理解不完全。在知道候选井之后,我们提出了一个新的工作流程,以优化作为智能井主要元素的间隔控制阀的数量,位置和性能。这是一项非常耗时的计算任务。因此,开发了代理模型并将其应用于加快流程。初步评估表明,由于参数之间的相互关系以及对目标函数的综合影响,单独优化每个参数并不是最佳实践。因此,开发了一种集成的优化方法,其中在此过程中,所有间隔控制阀的参数都被一起优化。通过在实际数据上应用此方法,可以实现累计产油量和采出水控制方面的显着改善。

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