首页> 外文会议>Society of Petroleum Engineers/European Association of Geoscientists and Engineers Conference and Exhibition >A Systematic Analysis to Select an Optimized Perforating Interval as a Key Factor for Improved Oil Recovery: Impact of Dynamic and Static Petrophysical Properties on Well Production
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A Systematic Analysis to Select an Optimized Perforating Interval as a Key Factor for Improved Oil Recovery: Impact of Dynamic and Static Petrophysical Properties on Well Production

机译:系统分析,选择优化的穿孔间隔作为改善储油的关键因素:动态和静态岩石物理性质对井生产的影响

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reservoirs in the Apure Area fields of southwest Venezuela. As a result, multiple well interventions have been conducted which increase costs and delay oil production. Several of these wells are inactive today but could be potential candidates for reactivation by reperforating prospective intervals. In several cases, the selection of the perforated interval for these reservoirs is considered inefficient because the effects of multiple dynamic and static petrophysical properties are not considered in the current method, such as vertical permeability, anisotropy or pore throat size, among others. We propose a systematic analysis to optimize the interval to be perforated for inactive and new wells that will minimize such related production problems. The proposed analysis involves the incorporation of multiple variables (type of perforation, interval to perforate, distribution of reservoir fluids, fluid of completion, etc.) to consider the effects of the different petrophysical properties on well productivity. The latter are obtained by integration of rock-core data and conventional and advanced well logs acquired in open and cased hole. In addition, we conducted a sensitivity study to analyze other parameters, such as perforating method and production behavior. A technical analysis was performed to select the optimum design based on different conditions leading to a complete study. The results show that the optimum interval selection and type of perforation to be implemented should not involve only a simple net pay consideration but also multiple factors such as reservoir properties, reservoir fluids distribution and perforating method that play a key role in well production behavior. Finally, we present field applications that confirm the success of this method that enables the reliable selection of an optimized perforated interval.
机译:西南委内瑞拉的Apure地区的水库。结果,已经进行了多种干预,提高了成本和延迟油生产。这些井中的几个今天不活跃,但可以通过重复预期间隔重新激活潜在的候选人。在几个情况下,这些储存器的穿孔间隔的选择被认为是低效的,因为在当前方法中不考虑多种动态和静态岩石物理性质的效果,例如垂直渗透性,各向异性或孔喉部尺寸等。我们提出了系统分析,以优化用于非活动和新井的间隔,以最大限度地减少这种相关的产生问题。所提出的分析涉及掺入多个变量(穿孔类型,间隔,穿孔,储层分布,完成的流体,完整的流体等),以考虑不同岩石物理性质对良好生产率的影响。后者是通过在开放和套管孔中获取的岩石核心数据和传统和先进的井原木而获得的。此外,我们进行了一个灵敏度研究,以分析其他参数,例如穿孔方法和生产行为。进行技术分析,以基于导致完整研究的不同条件选择最佳设计。结果表明,要实施的最佳间隔选择和穿孔的类型不应涉及简单的净付费考虑,而且还不涉及储层性质,储层流体分布和穿孔方法,这些因素在良好的生产行为中起关键作用。最后,我们存在现场应用程序,该应用程序确认这种方法的成功,这使得能够可靠地选择优化的穿孔间隔。

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