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Cost Optimization Study of Soak Period and Production Cycles of Cyclic Steam Injection in Lower Fars Heavy Oil LFHO Reservoir

机译:较低波浪LFHO水库循环蒸汽注射液浸泡期和生产周期的成本优化研究

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The cyclic steam stimulation(CSS)and injection process is a thermal recovery process consisting of three main stages: steam injection,steam soak and production of the heated oil.Before a stimulated well is put into production,a soak period is required to allow the injected steam to heat the oil around the wellbore and reduce its viscosity so that it will become more susceptible to flow.In actual operations,the soak period could vary from days to weeks,or even months.Prolonged soak period causes the well productivity to decline because of the continuous heat loss to the formation.On the other hand,insufficient soak period prevents effective transfer of the heat from the wet steam into the formation.For this reason,it is desirable to determine the optimal soak period that will maximize oil production and net profit during cyclic steam injection.The injection period at the beginning of the cycle,as well as its ensuing production period is also investigated to verify which stage in the CSS process is most influential in assuring higher recovery. In this study,a thermal,numerical reservoir oil simulator is utilized to evaluate the effect of varying the injection volume,soak period and production period with a view to improving crude oil recovery in Ratqa-North Kuwait Lower Fars Heavy Oil(LFHO)reservoir.Further economic studies are then pursued to determine the effectiveness of cyclic steam injection operations whilst maintaining a safe operational environment ensuring cap-rock integrity and also avoiding localized pockets of higher pressure and temperature(heaving). The key findings from this study was that the maximum injection period(60 days),minimum soak period (5 days)and minimum production period(90 days)are required for every cycle,in order to maximize recovery and optimize the cost.
机译:循环蒸汽刺激(CSS)和注射过程是由三个主要阶段组成的热回收过程:蒸汽注入,蒸汽浸泡和加热油的生产。在刺激的井被投入生产,需要浸泡期允许注入蒸汽以加热井筒周围的油,降低粘度,使其变得更容易流动。在实际操作中,浸泡期可能会因日期而异,甚至几个月。重新浸泡期导致井的生产率造成良好的生产率由于形成的持续热量损失。另一方面,浸泡周期不足,防止热量从湿蒸汽转移到地层中。这是理想的,可以确定最大化石油生产的最佳浸泡时期循环蒸汽注入期间的净利润。还调查了循环开始时的注射期,以及其随后的生产期,以验证CSS中的哪个阶段在确保更高的恢复时,过程最有影响力。在本研究中,利用热性数值储层油模拟器来评估改变注射体积,浸泡期和生产期的效果,以改善Ratqa-North Kuwait较低的FARS REPHOROL(LFHO)水库的原油回收。然后追求进一步的经济研究以确定循环蒸汽注入操作的有效性,同时保持安全的操作环境,确保帽岩石完整性,并避免局部凹穴的较高压力和温度(悬挂)。本研究的主要发现是每个循环所需的最大注射期(60天),最小浸泡期(5天)和最低生产期(90天),以最大限度地提高恢复并优化成本。

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