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The optimization of continuous gas lift process using an integrated compositional model

机译:使用集成成分模型优化连续气举工艺

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Artificial gas lift is frequently used to boost the production rate of mature oil fields. The ultimate aim is to design and operate a gas lift system that can maximize the economic return of the well over a long period. This may require adjustment of the gas injection rate, tubing diameter and separator pressure at some specific intervals. In this study, an integrated mathematical model was developed in order to track the spatial and temporal variation of components in the process. The model was coupled to a combination of genetic algorithm and the Marquardt optimization method in order to determine the process parameters that optimize the long-term economic return of an oil field. The results show that the maximum net present value is achieved when the production lifetime is divided into a suitable number of consecutive operation intervals with different tubing diameter, lift gas injection rates and separator pressures and an optimum value for tubing diameter.
机译:人工气举通常用于提高成熟油田的生产率。最终目的是设计和运行一个气举系统,该系统可以在长期内最大化井的经济回报。这可能需要在某些特定时间间隔内调整气体注入速率,管道直径和分离器压力。在这项研究中,开发了一个集成的数学模型以跟踪过程中组件的时空变化。将该模型与遗传算法和Marquardt优化方法相结合,以确定可优化油田长期经济回报的工艺参数。结果表明,将生产寿命分成适当的连续操作间隔数(具有不同的管径,提升气体注入速率和分离器压力)以及管径的最佳值时,可以实现最大净现值。

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