首页> 外文会议>PAPG/SPE Pakistan Section Annual Technical Conference and Exhibition >Maximizing Oil Recovery in a Naturally Fractured Carbonate Reservoir using Computational Intelligence based on Particle Swarm Optimization
【24h】

Maximizing Oil Recovery in a Naturally Fractured Carbonate Reservoir using Computational Intelligence based on Particle Swarm Optimization

机译:使用基于粒子群优化的计算智能来最大限度地利用天然碎屑储层中的采油

获取原文

摘要

A major challenge in carbonate reservoirs is the highly-fractured nature of the rock. The flow rate may be high or low depending on the targeted fracture clusters. In addition, it is possible that flow rates vary from one region of the reservoir to another. Smart wells furnished with smart completion strategy presents great prospects to produce such reservoirs intelligently, thereby, helping to deal with heterogeneities rather smartly. It is established that early water break-through occurs when multi-lateral wells are completed with constant choke settings, and therefore one way to mitigate this problem is using smart completions that manage the unexpected production through fractures, thereby increasing ultimate recovery. The early water breakthrough is obvious because if a lateral section intersects a clusters of fracture zone, there is a possibility that these fractures may connect with the water zone that may trigger the breakthrough. This can be managed by preferentially regulating production from manifold laterals. The evident communication among the various laterals of the mother bore raises difficulty in optimizing the production from the variable productivity intervals. In theory, the optimization scheme of smart completion involves different constraints, nevertheless, the settings of the smart inflow control valve (ICV) is the single most important parameter that may prove to be the differentiating factor between a high producing well to a poorly producing one. This study engrosses its effort on the reservoir engineering characteristics of finding the optimum choke setting that would lead to maximum recovery. Computational Intelligence through Particle Swarm Optimization (PSO) is utilized as the integral algorithm to determine the optimal ICV configuration for a fishbone well in a naturally fractured carbonate reservoir. A commercial black oil simulator was used to determine the objective function; whose role here is to evaluate the fitness of a configuration of the choke; this was carried out under a workflow programmed in the MATLAB programming language that coupled the optimization algorithm with the numerical simulator. A single fishbone well, having 15 laterals was studied in order tot see the effect of the fracture network on the water breakthrough and consequent impact on recovery. Three different scenarios are developed to see the impact of optimization; a base case employing only multilateral well technology without the smart well completion, a smart well completion scheme with no optimization and finally the optimized smart well completion. The results very sequentially clarify the need for not only optimization but also highlights the role of intelligent completions for wells in the reservoir being studied. It is evident that without using smart wells, the water breakthrough is relatively earlier and produces less hydrocarbons, but as the use of smart wells is incorporated, the results start improving and for complete optimization scheme of the ICVs, it is observed that the recovery has increased by almost 80% from 21% to 38%. Moreover, the time to water breakthrough and eventually the cumulative water cut has also been managed quiet significantly.
机译:碳酸盐岩储层的主要挑战是岩石的高度碎裂的性质。流率可以是高的或低的取决于目标断裂簇。此外,可能的是,流速改变从储存器的一个区域到另一个区域。配有智能完成战略呈现巨大前景智能井产生这样的水库智能,从而帮助而巧妙地处理非均质性。它建立在多分支井与常呛设置完成,因此为了缓解这个问题的一种方法是使用通过裂缝管理意想不到生产智能完井,从而提高最终采收率发生早期水的突破。早期见水是显而易见的,因为如果一个横向部分相交断裂带的簇,存在一种可能性,即这些裂缝可以与可以触发突破水区连接。这可以通过优选地调节生产从歧管支管进行管理。母孔的各个支管之间的明显提高的通信中从可变生产率间隔优化生产困难。从理论上讲,智能完成的优化方案涉及不同的限制,尽管如此,智能流入控制阀的(ICV)的设置是,可能被证明是生产井的生产不良一项所述的高之间的区别因素的一个最重要的参数。这项研究engrosses其上找到最佳扼流圈设置,这将导致最大回收率的油藏工程特性的努力。计算智能通过粒子群优化(PSO)被用作积分算法,以确定鱼骨的最优配置ICV以及在天然裂缝碳酸盐贮存器。商业黑油模拟器被用于确定目标函数;在这里,其作用是评估扼流圈的配置健身;这是在与所述数值模拟器耦合在所述优化算法的MATLAB编程语言编程的工作流条件下进行。单个井鱼刺,具有15支管,以便托特看到裂缝网络的对水突破和恢复造成的影响的效果进行了研究。三种不同的方案的开发,以优化看到的影响;基本情况只采用多分支井技术,而不智能完井,没有优化,最终优化的智能完井智能完井方案。结果非常明确顺序,不仅优化的需要,但也凸显了智能完井在油藏井的作用正在研究中。很明显,如果没有使用智能井,见水是比较早,产生的碳氢化合物,但随着使用智能井的结合,结果开始改善,为新天地的完整的优化方案,观察到回收有增加了近80%从21%至38%。此外,时间见水,并最终累积含水率也显著管理安静。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号