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Investigation of Optimum Salinity of Injected Water in Carbonate Reservoirs using Wettability Measurement and Core Flooding

机译:使用润湿性测量和核心洪水研究碳酸盐储层注射水最佳盐度的研究

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Waterflooding is the most popular secondary oil recovery method. Attempts were made to increase the sweep efficiency of waterflooding by focusing on various physical and chemical aspects of this process. Low salinity waterflooding was an important research topic in recent years, with a focus on the possible effect of various compositions of injected fluid on oil recovery. In this study, the effect of the salinity level on oil recovery in a limestone reservoir was investigated. The methodology utilized multiple limestone core samples. After x-ray analysis, four samples with high calcite content (more than 98% calcite) were used in flooding experiments and the impact of the salinity level on oil recovery was measured. This study is a continuation of a project at The University of Tulsa (Al Shaikh, 2012). The design of the coreflooding study was constructed base on the contact angle measurement results of the wettability study. The Tagochi method was used to design wettability measurement experiments that span varieties of salinity combinations. The current study showed that coreflooding recovery has a clear relationship with the contact angle measurement of calcite plate. We showed that contact angle values are better indicators for choosing optimum injected water composition in compare to the salinity level. Sequential injection of water with the lower measured contact angles led to the highest recovery. This relationship is not necessarily valid for the salinity level because our wettability experiments show that there is no direct relationship between the measured contact angle and the salinity level of water. During this experiment, incremental oil recovery from 12 to 18 percentages was reported. This shows the high potential of success for this method. We showed that Tagochi method is an effective way to design an experiment for measuring the contact angle and finding the optimum level of salinity. Similar experiments are required before applying this method to the field. In practice, there is an optimum salinity beyond which purifying the brine water further will not lead to incremental oil recovery. Finding the optimum salinity scenario is essential for increasing recovery with minimum cost.
机译:浇水是最受欢迎的二级石油回收方法。通过专注于该过程的各种物理和化学方面,提高喷水效率的尝试。近年来,低盐度水上浇灌是一个重要的研究课题,重点是各种成分对油回收的各种组成的可能影响。在这项研究中,研究了盐度水平对石灰石储层中的储油中的盐水回收的影响。该方法利用多个石灰石核心样本。在X射线分析后,使用具有高考核含量(超过98%方解石)的四个样品在洪水实验中使用,并测量盐度水平对油回收的影响。本研究是在塔尔萨大学(Al Shaikh,2012)的一个项目的延续。 CorePlood研究的设计是基于润湿性研究的接触角测量结果的基础。 Tagochi方法用于设计跨度盐度组合品种的润湿性测量实验。目前的研究表明,核心康复回收与方解石板的接触角测量有明显的关系。我们表明,接触角值是选择最佳注入水组合物的更好的指标与盐度水平相比。较低测量的接触角的顺序注入水导致最高的恢复。这种关系对于盐度水平不一定是有效的,因为我们的润湿性实验表明,测量的接触角与水的盐度之间没有直接关系。在此实验中,报告了12至18个百分比的增量溢油。这显示了这种方法的成功潜力的高潜力。我们表明,Tagochi方法是设计用于测量接触角的实验并找到最佳盐度水平的实验的有效方法。在将该方法应用于该领域之前需要类似的实验。在实践中,最佳盐度超越,纯化盐水进一步不会导致增量的油回收。找到最佳盐度方案对于提高恢复以最低成本来说至关重要。

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