模拟一种利用智能完井延迟气顶井见水的新方法:以阿布扎比陆上油田为例

Aditya Ojha, M. A. Al Hosani, A. A. Al Bairaq, S. Mengal, I. Mohamed, A. Abdullayev, Allen Roopal
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引用次数: 2

摘要

本文介绍了一种新的建模方法,以确定实施智能完井对位于气顶边缘附近的注水井和位于气顶的产气井的影响。研究的目的是深入研究不同的智能完井设计,以有效地延缓气顶井的水侵。该研究调查了添加智能完井设计(如ICD和AICD阀)对延迟破水的影响。第一阶段是将智能完井只添加到注水井中。使用商用近井模拟器对几种井下完井设计方案进行了敏感性运行,并在动态模型上实施了最佳井下完井设计,并使用油藏模拟器检查了其影响。在第二阶段,这种方法只应用于天然气生产商,在第三阶段,智能完井同时应用于注水井和天然气生产商。详细的研究表明,通过使用优化的工作流程,可以大大减少选择最佳ICD设计和放置所涉及的不确定性和时间。该工作流程采用了精心设计的流程,使用近井模拟器的结果,并将结果纳入实际的全油田动态模型,以评估油田水平的影响。与裸脚设计相比,ICD和AICD阀在延迟气井水突破方面表现出更好的性能。本文详细研究了不同智能完井方式对延迟气井破水的影响。该研究还探讨了如何使用不同的智能完井来获得均匀的注入或生产剖面。均匀的注入和生产剖面限制了储层中的水指,从而延缓了水通过高渗透通道引起的水侵。
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Modeling a Novel Approach to Delay the Water Breakthrough in Gas Cap Wells Using Smart Completions: Case Study Onshore Abu Dhabi Field
This paper presents modeling a novel approach to determine the impact of implementing smart completions on water injectors located near the periphery of the gas cap and on gas producing wells situated in the gas cap of a giant Middle East onshore field. The objective of the study is to thoroughly investigate different smart completion designs which can effectively delay water breakthrough on the gas cap wells. The study investigates the impact of adding smart well completion designs like ICD and AICD valves in delaying water breakthrough. The first phase involves adding smart completions to only water injectors. Sensitivity runs on several downhole completion design scenarios are conducted using a commercial near wellbore simulator and the optimal downhole completion design is implemented on a dynamic model and its impact is examined using a reservoir simulator. In the second phase, this approach is applied only for gas producers, and in the third phase the smart completions are simultaneously applied to both water injectors and gas producers. The detailed study has revealed that the uncertainties and time involved in selecting optimal ICD design and placements could be reduced considerably by using an optimized workflow. The workflow uses a carefully designed process of using the outcomes from near wellbore simulators and incorporating the results in the actual full field dynamic models to assess the field level impacts. When compared to the bare foot design, ICD and AICD valves showed better performance in delaying water breakthrough from the gas wells. This paper provides a detailed study on the impact of different smart completions on delaying water breakthrough in gas production wells. The study also investigates how a uniform injection or production profile can be produced using different smart completions. Uniform injection and production profiles limit water fingering in the reservoir, and thereby delay water breakthrough caused by the flow of water through high permeability channels.
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