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Waterflooding Optimization: A Pragmatic and Cost-Effective Approach to Improve Oil Recovery from Mature Fields

机译:水顶优化:一种务实和经济有效的方法,以改善成熟领域的石油回收

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This paper presents selected effective technologies and best practices to improve oil recovery from mature fields through waterflooding optimization. These technologies are proved practical, applicable and cost- effective. They can effectively facilitate further development of mature fields, which is more important than ever before in the current economical down-turn environment. First, this paper summarizes and discusses several pragmatic approaches to optimize waterflooding of sandstone reservoirs. These methods have proved to be beneficial for expanding sweep, thus increasing ultimate recovery. Next, the authors introduce two methods to evaluate the effectiveness of application of these technologies, which can support both qualitative evaluation of the successfulness of the applications; and quantitative estimate of incremental recovery. Finally, this paper illustrates the best practices of each waterflooding optimization technology and the associated reservoir dynamic performance. Waterflooding optimization aims at expanding volume sweep to recover bypassed oil in undrained areas or remaining oil in poorly swept areas. The main established approaches include (a) zonal water injection, (b) changing direction of fluid flow, (c) subdividing injection-production unit, (d) water shut-off to improve areal sweeping efficiency, and (e) cyclic water injection. These techniques are particularly applicable to multi-layer, vertically and laterally heterogeneous reservoirs at the high water-cut production stage. One best-practice example shows that converting comingled water injection into zonal injection has successfully arrested production decline, and resulted in an 11.8% incremental recovery. In another reservoir with 98% water cut and 54.5% recovery of changing injection direction by modifying well pattern has led to a 10% incremental recovery by. In still another example, subdivision of injection-production unit combined with infill wells has achieved incremental recovery ranging from 9% to 20%. A further case illustrates that, compared with continuous water injection, cyclic injection had led to reduced water production, lowered water-cut and increased recovery, and resulted in an incremental recovery of 1.84% EUR. To conclude, maximizing reservoir sweep efficiency is the core step of waterflooding optimization. The techniques and best practices discussed in this paper possess both technical and economic viability. Effective application of those methods is an essential part of profitable reservoir management of mature fields.
机译:本文介绍了所选的有效技术和最佳实践,以通过水上优化来改善成熟田地的石油回收。这些技术被证明是实用的,适用和成本效益。它们可以有效促进成熟领域的进一步发展,这比以往任何时候都在当前经济的下匝环境中更重要。首先,本文总结说,讨论了多种务实的优化砂岩储层水土的务实方法。这些方法证明有利于扩大扫描,从而增加最终的恢复。接下来,作者介绍了两种方法来评估这些技术的应用有效性,这可以支持对应用程序的成功进行定性评估;和增量恢复的定量估计。最后,本文说明了每种水顶优化技术的最佳实践以及相关的储存器动态性能。水顶优化旨在扩大体积扫描以恢复未经扫描地区的旁路油或剩余的油状地区。主要建立的方法包括(a)区间注水,(b)改变流体流动方向,(c)细胞注射生产单元,(d)水关闭以改善面部扫描效率,(e)循环注水。这些技术特别适用于高水切割生产阶段的多层,垂直和横向异质储层。一个最佳实践的例子表明,将lejindled注水转化为带状注射,已成功地逮捕了生产下降,导致了11.8%的增量恢复。在另一储存器中,通过改变井图案,在98%的水切割和54.5%的改变方向恢复时,导致了10%的增量回收。在又一个例子中,注射生产单元的细分与填充孔结合的增量恢复从9%到20%。另一个案例说明,与连续注水相比,循环注射导致水产量降低,降低了水切口和增加的恢复,并导致增量回收率为1.84%EUR。为了得出结论,最大化的储层扫描效率是水性优化的核心步骤。本文讨论的技术和最佳实践具有技术和经济可行性。这些方法的有效应用是成熟领域有利可图的水库管理的重要组成部分。

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