Optimization of Gas Lifting Design in Mishrif Formation of Halfaya Oil Field

Safwan Riyadh Ahmed, Dhifaf Jaafar Sadeq, Hisham Ben Mahmud
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Abstract

The optimization of artificial gas lift techniques plays a crucial role in the advancement of oil field development. This study focuses on investigating the impact of gas lift design and optimization on production outcomes within the Mishrif formation of the Halfaya oil field. A comprehensive production network nodal analysis model was formulated using a PIPESIM Optimizer-based Genetic Algorithm and meticulously calibrated utilizing field-collected data from a network comprising seven wells. This well group encompasses three directional wells currently employing gas lift and four naturally producing vertical wells. To augment productivity and optimize network performance, a novel gas lift design strategy was proposed. The optimization of gas allocation was executed to maximize oil production rates while minimizing the injected gas volume, thus achieving optimal oil production levels at the most effective gas injection volume for the designated network. The utilization of the PIPESIM Optimizer, founded on genetic algorithm principles, facilitated the attainment of these optimal parameters. The culmination of this study yielded an optimal oil production rate of 18,814 STB/d, accompanied by a gas lift injection rate of 7.56 MMscf/d. This research underscores the significance of strategic gas lift design and optimization in enhancing oil recovery and operational efficiency in complex reservoir systems like the Mishrif formation within the Halfaya oil field.
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哈法亚油田Mishrif组气举设计优化
人工气举技术的优化对油田开发的推进具有至关重要的作用。本研究的重点是研究Halfaya油田Mishrif地层气举设计和优化对生产结果的影响。利用基于PIPESIM优化器的遗传算法建立了一个全面的生产网络节点分析模型,并利用由7口井组成的网络现场收集的数据进行了精心校准。该井组包括3口目前采用气举的定向井和4口天然直井。为了提高生产效率和优化网络性能,提出了一种新的气举设计策略。为了在最大限度地提高产油量的同时最小化注入气量,对天然气分配进行了优化,从而在指定网络的最有效注气量下实现了最佳产油量。利用基于遗传算法原理的PIPESIM优化器,可以实现这些最优参数。研究结果表明,该油藏的最佳产油量为18814 STB/d,气举注油量为7.56百万立方英尺/天。该研究强调了战略气举设计和优化在提高油藏采收率和作业效率方面的重要性,如Halfaya油田的Mishrif地层。
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12 weeks
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