A Comprehensive Scheme for Application of Low Salinity Waterflooding Technique in Mature Fields

H. Elmasry, Mohamed Anwar, E. Moussa
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Abstract

The main seek for the whole oil industry is to find a way to prolong the economic life of the existing mature fields, as a result of the difficulty of finding new big assets. The waterflooding efficiency can be dramatically enhanced by the application of new technologies with the target of sweeping higher amounts of unswept oil. IOR/EOR methods are investigated to improve the oil production from the giant Belayim Onshore mature field located in Gulf of Suez, Egypt. The field was previously developed by using sea water peripheral injection. The existing water injection strategy is found not be the optimum strategy to increase the sweep efficiency and the recovery factor as a result of the huge lateral heterogeneity and different mobility ratio. This paper describes the work done to improve the efficiency of water injection by the application of different IOR/EOR technologies specifically Low Salinity water. First, Coreflooding experiments on porous medium have been performed in the tertiary mood to detect the effect of IOR compared to the sea water injection. It was found that LS can increase oil recovery nearly to 7% more. After finishing the lab phase, simulation runs have been performed to predict the enhancement on field scale. The coreflooding experiments have been simulated using a wettability alteration model to determine the LS parameters and the new relative permeability curves. These parameter were the input into a sector model of fine gridding. The model was history matched using the wells production and injection data for the LS pilot area under study. Different forecast scenarios have been run and the incremental increase in oil recovery was reported against the current water injection scheme A number of Single Well Tracer Tests have been performed to detect the effect of Low Salinity water flooding on well scale. The test was designed to incorporate a number of injection, production and shut in cycles in the pilot well with the aim determining the residual oil saturation with the current scheme of sea water injection and after switching into low salinity water. It was found that Low salinity water has achieved very promising results that produced a remarkable reduction in Sor at the range of (5-11) saturation units. In order to estimate the full-field effect of the LS waterflooding as a promising EOR method, all the major aspects have been taken into account including the expected reduction in residual oil saturation, permeability alteration as a result of possible fine migration or clay swell and the possible change in the sweeping efficiency. Finally, all the produced results from the experimental and simulation work have been incorporated into an economic study to determine the feasibility of constructing a desalination plant for the full-field application phase
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成熟油田低矿化度水驱技术应用的综合方案
由于很难找到新的大资产,整个石油行业的主要目标是找到一种方法来延长现有成熟油田的经济寿命。通过应用新技术,可以显著提高水驱效率,目标是开采更多的未驱油。为了提高埃及苏伊士湾Belayim大型陆上成熟油田的产油量,研究了IOR/EOR方法。该油田以前是通过海水外围注入进行开发的。由于侧向非均质性大、流度比不同,现有的注水策略并不是提高波及效率和采收率的最佳策略。本文介绍了通过应用不同的IOR/EOR技术,特别是低盐度水,来提高注水效率所做的工作。首先,在多孔介质上进行了三级流驱实验,以检测IOR与海水注入的效果。结果表明,LS可使原油采收率提高近7%。在完成实验室阶段后,进行了模拟运行,以预测现场规模的增强。采用润湿性蚀变模型对岩心驱油实验进行了模拟,确定了LS参数和新的相对渗透率曲线。这些参数被输入到精细网格的扇形模型中。该模型使用LS试验区的井生产和注入数据进行历史匹配。研究人员进行了不同的预测情景,并报告了当前注水方案下采收率的增量增加。为了检测低盐度水驱对井规模的影响,进行了许多单井示踪剂测试。该测试包括在试验井中进行多次注入、生产和关井循环,目的是在目前的海水注入方案和切换到低矿化度水后确定残余油饱和度。研究发现,低盐度水取得了非常有希望的结果,在(5-11)饱和单位范围内显著降低了Sor。为了评估LS水驱作为一种有前景的提高采收率方法的全油田效果,我们考虑了所有主要方面,包括残余油饱和度的预期降低、可能的细运移或粘土膨胀导致的渗透率改变以及波及效率的可能变化。最后,所有从实验和模拟工作中产生的结果都被纳入经济研究,以确定在整个现场应用阶段建造海水淡化厂的可行性
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