How to Block the Water Channels by High-Density Polyethylene Particles Supersaturated Filling Out-of-Screen and Inflow Control Device in Heterogeneous Sandstone Reservoir

Hongfu Shi, Zhongbo Xu, H. Cai, Wenjun Zhang, Yunting Li
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Abstract

At present, the Bohai Oilfield has entered the late stage of high water cut, with a high degree of flooding and an average water cut of more than 80%. Horizontal wells were widely used in tapping the potentials of high water-cut oilfields with avoiding local water flooding, accurately develop enrichment of remaining oil, and improving initial productivity. Until 2020, there are more than 1,200 horizontal wells in the Bohai Oilfield, with daily production accounting for more than 40% of the entire oilfield. However, mainly continental deposits, strong heterogeneity, heavy oil, relatively large mobility ratio, long-term water flooding, and large liquid production have resulted in the obvious dominant channels in the formation, intensified ineffective water circulation, and low oil recovery. The application of horizontal wells faces huge challenges due to the serious water flooding and the prevalence of thief zones. Inflow Control Device (ICD) is becoming more and more prevalent in bottom water reservoirs as it can delay the water breakthrough and significantly improve the economic benefit of a project by producing more oil and less water. The strong microscopic heterogeneity along the horizontal water channeling outside the screen or water channeling along the annulus between the screen and ICD tubular is responsible for the short term even ineffective effect of conventional ICD. Based on the review of the conventional ICD application in the Q oilfield, a workflow is present to design and optimize hybrid ICD to increase the success probability of the validity period of water control.
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非均质砂岩储层高密度聚乙烯颗粒过饱和充填筛外控流装置如何封堵水通道
目前,渤海油田已进入高含水后期,注水程度高,平均含水80%以上。水平井具有避免局部水驱、准确开发剩余油富集、提高初始产能等优点,广泛应用于高含水油田开发潜力。到2020年,渤海油田共有水平井1200余口,日产量占整个油田的40%以上。但由于以陆相沉积为主,非均质性强,稠油含量高,流度比较大,长期水驱,产液量大,导致地层优势通道明显,无效水循环加剧,采收率低。水平井的应用面临着严重的水淹问题和普遍存在的储层问题。流入控制装置(ICD)在底水油藏中越来越普遍,因为ICD可以延缓井底见水的时间,通过出更多的油和更少的水来显著提高项目的经济效益。筛管外沿水平水通道或筛管与ICD管间环空水通道的微观非均质性强,是常规ICD短期甚至无效的原因。在总结Q油田常规ICD应用的基础上,提出了一套混合式ICD的设计与优化流程,以提高控水有效年限的成功率。
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