首页> 外文会议>SPE Kingdom of Saudi Arabia Annual Technical Symposium and Exhibition >Toward Improving Reservoir Management Practices in Naturally Fractured Carbonate Reservoirs Using Adjustable Inflow Control Devices ICDs
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Toward Improving Reservoir Management Practices in Naturally Fractured Carbonate Reservoirs Using Adjustable Inflow Control Devices ICDs

机译:使用可调流入控制装置ICDS改进天然骨质碳酸盐储层的水库管理实践

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Field development of a mature, highly fractured carbonate field presents several challenges. Most of the horizontal wells drilled in such fractured reservoirs suffer from early gas or water breakthrough because conductive fractures dominate the influx from the reservoir and cause an unbalanced flux profile along the wellbore. Premature gas or water breakthrough can result in poor sweep efficiency and reduced oil recovery for the well. To address the aformentioned challenges, passive inflow control devices (ICDs) can be used to equalize influx from the reservoir to the wellbore, thereby delaying gas or water breakthrough. However, during the life of the well, as water or gas breakthrough occurs, a passive ICD can be less effective in preventing water or gas production. This can effect well productivity and reduce the production life of the well, especially for a naturally flowing well. This paper describes how adjustable ICD technology with a sliding sleeve can be used as an effective reservoir management tool in mitigating challenges faced in a naturally fractured Middle Eastern carbonate field. Various examples from the subject field are presented to describe production challenges faced by barefoot and passive ICD-completed horizontal wells. The field cases suggest the need for adjustable ICD with sliding sleeve technology which provides a zonal shut-off option in case of water or gas breakthrough. A detailed workflow for usage of adjustable ICDs is described, and which includes well candidate selection, well monitoring and pre and post shifting well performance evaluation to determine which ICD unit must be shifted to a closed or open position. A dynamic simulation using a single-well model was also conducted to establish the benefits of a sliding sleeve on well production performance.
机译:现场发展成熟,高度骨折的碳酸盐田呈现出几种挑战。在这种裂缝储层中钻出的大多数水平井患有早期气体或水突破,因为导电裂缝占据了储层的涌入,并导致沿井筒的不平衡通量曲线。早产或水突破可能导致扫描效率不佳,井中的采油率降低。为了解决上述挑战,被动流入控制装置(ICDS)可用于将流入从储存器均衡到井筒,从而延迟气体或水突破。然而,在井的寿命期间,随着水或气体突破发生时,无源ICD在防止水或天然气生产方面可以不太有效。这可以影响生产率良好,减少井的生产寿命,特别是对于天然流动的井。本文介绍了如何具有滑动套筒的可调ICD技术,可用作有效的储层管理工具,这些工具在自然骨折的中东碳酸盐田中面临的缓解挑战。提出了来自主题领域的各种示例,以描述赤脚和被动ICD完成的水平井所面临的生产挑战。现场案例表明需要具有滑动套筒技术的可调ICD,在水或气体突破的情况下提供了带状关闭选项。描述了用于使用可调ICD的详细工作流程,包括良好的候选选择,良好的监控和预先发布良好的性能评估,以确定必须将哪个ICD单元移位到闭合或打开位置。还进行了使用单井模型的动态仿真,以建立滑动套筒的良好生产性能。

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