气举设计:井/油藏全生命周期考虑与分析的重要性

O. Onwuemene
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引用次数: 0

摘要

本文讨论了如何通过考虑与油气井生产生命周期相关的整体特性的深度气举设计来维持和进一步提高产量。以尼日利亚陆上油田的58号井为例,作为计划关井的一部分,该井关井了2天。经过几次关闭后重新启动失败的尝试,经验教训分析表明,虽然受影响的井安装了所有所需的气举系统,但由于气举设计不充分,没有考虑到油藏、井和地面设施的整个生命周期,因此无法进行生产。对气举设计技术进行了主要的重新分析,这次捕获了关键要求,并详细讨论了最终的建议。所提出的气举设计优化了注气深度,并考虑了该井的后期生产阶段。通过58井的实例,本文概述并提出了新井气举设计的建议清单,以及对现有气举装置的改造或修井,以保持和优化井的性能。即使高质量的气举生产结果可以通过广泛的其他活动来实现,例如;对生产操作人员进行特殊培训,优化注气速率,修改地面管道系统,识别和更换有缺陷的电缆可回收气举阀,确保上述活动充分受益的最重要变量是改进的气举设计技术。虽然58号井通过非常规方法进行了恢复,但如果在井规划和完井过程中采用适当的气举设计,则可以避免记录的3周停机时间和相关的经济损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gas-Lift Design: Importance of Well/Reservoir Full Life Cycle Consideration and Analysis
This paper discusses how production rates can be sustained and further increased from an indepth gas-lift design that considers the holistic properties associated oil and gas Well production lifecycles. An example is shown of a Well 58 in a field onshore Nigeria which was shut-in for 2-days as part of scheduled Field shut-down. After several failed attempts to restart the Well post shut-down period, lessons learnt analysis indicated that while the affected Well had all the required gas-lift system installed, it's inability to flow may have been due to inadequate gas-lift design that did not account for the full life cycle of the reservoir, Well and surface facilities. A major re-analysis is carried out on the gas-lift design technique, this time capturing key requirements and the resultant proposal is discussed in detail. The proposed gaslift design optimizes the depth of gas injection with consideration given to the latter production phase of the the Well. Through the example of Well 58, this paper outlines and proposes a checklist of recommendations for gas lift design for new Wells and re-working or workover of existing gas-lift installations from which Well performance can be sustained and optimized. Even if quality gaslift-production results can be achieved through a wide range of other activities such as; special training for production operators, optimizing gas injection rates, modifying surface piping systems, identifying and replacing defective wireline-retrievable gas-lift valves, the most important variable that will ensure the full benefit of the above listed range of activities is the improved gas-lift design technique. Although Well 58 was revived via unconventional methods, the recorded 3-week downtime and the associated financial losses could have been avoided if an adequate gas lift design as proposed in this paper was explored during the Well planning and completion.
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