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Strategic Waterflood Optimization with Innovative Active Injection Control Devices in Tight Oil Reservoirs

机译:战略性水源优化,采用狭小油藏创新活性注射控制装置

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This paper presents the successful implementation of an innovative approach for improving oil recovery by water injection optimization with Injection Control Devices (ICD's) in unconventional reservoirs. Over the past decade, operators in Southeast Saskatchewan have been continually innovating and finding efficiencies to improving water injectivity across horizontal wellbores. In late 2016, the Crescent Point Energy started a trial campaign applying ICD's in relatively low flow rate environments to offset production decline and improve recovery in the Bakken, Shaunavon and Midale formations. Early term results show greater than 25% improvement is possible in oil recovery over typical waterflood configurations. The operator had applied waterflood as a secondary recovery method and found field trials to stabilize production decline and improve ultimate recovery. The effectiveness of waterflood in unconventional, fractured reservoirs has been debated. In some cases, short circuiting of injection water to production wells through fracture channels has occurred. This has been found to reduce sweep efficiency. The issue was evaluated and it was determined there was a need to equalize the injection profile across the horizontal wellbore. Understanding the flow profiles of injection wells was instrumental in developing diversion strategies. Applying Distributed Temperature Surveys (DTS) has been found to be an effective method of estimating flow profiles at relatively low flow rates. Using processed DTS data, a reservoir simulation model has been used to match unique injection profiles along horizontal wellbores. The results from these models supported the need to pursue injection diversion. Several means to optimize injection profiles have been trialed, the results of which support the theory of sweep optimization. However, the limited number of isolated injection points achievable with given wellbore diameters has impeded potential for this development. The introduction of ICD injection strings allows for an optimum number of injection points, improving sweep efficiency and accelerating voidage replacement. This paper reviews the design, execution and evaluation process used in more than 50 successful ICD installations in various fields across Saskatchewan. The performance of these ICD strings was then monitored and evaluated in collaboration with the operator and service providers.
机译:本文介绍了通过在非传统水库中使用注射控制装置(ICD)采用注水优化改善石油恢复的创新方法的成功实施。在过去十年中,东南萨斯喀彻温的运营商一直不断创新和寻找改善水平井喷的水的效率。 2016年底,新月点能源启动了申请ICD在相对较低的流量环境中的试验,以抵消生产下降,并改善Bakken,Shaunavon和Midale地层的恢复。早期结果显示出于典型的水机械配置的石油回收率可能提高了25%。该操作员已将水运作为二级恢复方法,发现现场试验稳定生产下降,提高终极恢复。争论了水运在非传统,碎储层的有效性已经讨论。在某些情况下,发生了通过裂缝通道向生产井的注射水短路。已经发现这可以减少扫描效率。该问题进行了评估,并确定了需要在水平井筒上均衡喷射谱。了解注射井的流动概况在开发转移策略方面是有用的。已经发现应用分布式温度调查(DTS)是以相对低的流速估计流程谱的有效方法。使用加工的DTS数据,储存器仿真模型已被用于沿水平井筒匹配独特的注射曲线。这些模型的结果支持需要追求注入转移。已经试验了优化注射型材的几种方法,结果支持扫描优化理论。然而,通过给定井眼直径可实现的有限数量的注射点已经阻碍了这种发展的潜力。 ICD喷射串的引入允许最佳的注入点,提高扫描效率和加速失控替代。本文介绍了在遍布萨斯喀彻温省各种领域的50多个成功ICD安装中使用的设计,执行和评估过程。然后监控这些ICD字符串的性能,并与操作员和服务提供商协作进行评估。

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