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Application of Gas Injection and Recycling to Enhance Condensate Recovery

机译:气体注入和循环利用在提高冷凝水回收率方面的应用

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摘要

Condensate loss is one of the major challenges in the gas condensate reservoirs. It results in a reduction of gas permeability and gas productivity. Different methods have been proposed to mitigate the condensate dropout and increase gas and condensate productivity. One of these techniques is gas recycling. Moreover, dry gases such as methane, nitrogen, and carbon dioxide are good candidates for this purpose. The authors investigate the effect of gas recycling and gas injection on an Iranian gas condensate reservoir. First, a literature review of the subject matter was carried out, followed by an introduction of the field. Afterward, steps performed for construction of dynamic model were described. Then, specified production scenario for development plan of the field was presented. A sensitivity analysis was carried out to determine the optimum number of additional wells to meet the target rate of the field. Consequently, injection scenarios including gas recycling, methane injection, nitrogen injection, and CO_2 injection at different injection rates were studied. Results indicated that nitrogen injection and gas recycling can improve recovery factor and plateau lime rather than other cases. At high injection rates, gas recycling showed the highest condensate recovery (47%) among these scenarios.
机译:凝析油损失是凝析气藏的主要挑战之一。这导致气体渗透率和气体生产率的降低。已经提出了不同的方法来减轻冷凝物的滴落并增加气体和冷凝物的生产率。这些技术之一是气体再循环。此外,为此目的,干燥气体如甲烷,氮气和二氧化碳是很好的选择。作者研究了气体再循环和注气对​​伊朗天然气凝析气藏的影响。首先,对该主题进行了文献综述,然后对该领域进行了介绍。随后,描述了用于建立动态模型的步骤。然后,提出了针对该领域的开发计划的特定生产方案。进行了敏感性分析,以确定满足井场目标速率的最佳附加井数。因此,研究了在不同注入速率下包括气体再循环,甲烷注入,氮气注入和CO_2注入的注入方案。结果表明,氮气注入和气体再循环可以提高采收率和高原石灰,而不是其他情况。在高注入速率下,在这些情况下,气体再循环显示出最高的冷凝物回收率(47%)。

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