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In-depth Sweep Efficiency Improvement: Screening Criteria and Engineering Approach for Pattern Evaluation and Potential Field Implementation

机译:深入扫描效率改进:筛选模式评估和潜在现场实施的标准和工程方法

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A common problem of waterflooded oil reservoirs is the premature water breakthrough bypassing high remaining oil saturation in unswept zones that are risky targets for infill and sidetrack drilling. Early water breakthrough can be caused by reservoir heterogeneity and unfavorable mobility ratios of oil and injected water. There are several IOR/EOR technologies that can be used to reduce water production and increase sweep efficiency. Polymer gels (“Conformance treatments”), polymer flooding and Colloidal Dispersion Gels (CDG) are some of the technologies most commonly used during the last few decades. However, the applicability of a given technology will depend on the problem (e.g., water channeling, adverse mobility, etc.) and its applicability under given reservoir conditions (e.g., temperature, salinity, lithology, and injection and fracturing pressures, among others). The purpose of this paper is to describe screening criteria for thermally-activated polymer (TAP) flooding technology implementation before starting detailed project evaluations. Based on the suggested screening criteria and evaluation approach, it is possible to rank patterns or asset candidates for in-depth conformance treatments to improve sweep efficiency or delay premature water breakthrough. This is especially important for projects in remote areas or in offshore conditions where water handling is costly. Based on field experiences, laboratory experiments, and new simulation approaches that are being continually improved, in- depth conformance treatments are carefully designed before pilot or asset implementation. The proposed screening methodology was used to evaluate and rank temperature-triggered polymer applicability in more than 20 Russian oil fields. Results show how to identify good or poor candidates to evaluate the technology, which increases the probability for successful implementation. In some other instances the combination of technologies might be required to maximize ultimate recoveries.
机译:水上油储层的一个常见问题是绕过填充区域的高剩余油饱和度的过早水突破,这是填充填充和侧面钻探的危险目标。早期水突破可能是由储层异质性和油和注射水的不利迁移率比引起的。有几种IOR / EOR技术可用于降低水资源并提高扫描效率。聚合物凝胶(“一致性处理”),聚合物泛滥和胶体分散凝胶(CDG)是在过去几十年中最常用的技术。然而,给定技术的适用性将取决于问题(例如,水窜,不利迁移率等),其在给定储层条件下的适用性(例如,温度,盐度,岩性和注射压力和压裂压力等) 。本文的目的是描述在开始详细的项目评估之前,描述用于热激活聚合物(TAP)洪水技术实施的筛查标准。基于建议的筛选标准和评估方法,可以对深入一致性治疗进行排名或资产候选,以提高扫描效率或延迟过早的水突破。这对偏远地区的项目或水处理成本高昂的近海条件尤为重要。基于现场经验,实验室实验和正在不断提高的新模拟方法,在试点或资产实施之前精心设计了深入的一致性处理。所提出的筛选方法用于评估和排名在20多个俄罗斯油田中的温度触发的聚合物适用性。结果显示如何识别良好或可怜的候选人来评估技术,这增加了成功实施的概率。在其他一些情况下,可能需要技术的组合来最大限度地恢复。

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