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The Impact of LoSal~(TM) on Oil Recovery from a Selected Carbonate Reservoir in Abu Dhabi-An Experimental Approach

机译:洛杉矶(TM)对阿布扎比的选定碳酸盐储层对储蓄的影响 - 一种实验方法

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Low-salinity water flooding LoSal~(TM) has been used to improve oil recovery for many decades. Historically, the physical mechanism behind this improvement in oil recovery was attributed to the pressure maintenance and displacement of oil by injected water. Recently, evidence from laboratory and field tests indicated that water flooding also involves chemical processes and that modifying of the injection brine salinity and its ionic composition can significantly impact the oil recovery. Several theories regarding the mechanism of LoSal~(TM) flooding have been discussed in the literature. These include interfacial tension reduction, wettability alteration (cation exchange), change in pH (increase), emulsion formation, and clay migration. There is no agreement, however, among the researchers regarding the mechanism of LoSal~(TM) flooding and although limited work has been done on carbonates, some studies have concluded that LoSal~(TM) have no effect on oil recovery. This work presents the results of flooding tests on selected carbonate core samples taken from Bu Hasa field in Abu Dhabi using sea water and two field injection waters, Um-Eradhuma (UER) at 197,584 ppm and Simsima (SIM) at 224,987 ppm. These results were used to evaluate the effects of brine salinity and ionic composition on the possible interactions of limestone rock/ brine/ and oil system and to identify the oil recovery mechanism. The field injection waters were diluted to salinities of 5000 and 1000 ppm and the optimum salinity was determined and then modified by varying the sulfate and calcium ion concentrations. Wettability alteration was determined by contact angle measurements. Interfacial tension measurements of the studied systems were also performed in an attempt to evaluate the flow mechanism with LoSal~(TM) flooding. The experimental results revealed that a significant improvement in the oil recovery can be achieved through alteration of the injection water salinity. Reducing the salinity of UER water from 197,362 ppm to 5000 ppm resulted in an improvement of oil recovery from 63% to 84.5% of OOIP and the latter salinity was used to evaluate the impact of changing the sulfate and calcium ion concentrations on oil recovery. Results also indicated that sulfate concentration has a significant effect on the flooding process and that increasing the sulfate concentration beyond some optimum concentration of 47 ppm resulted in a negative effect on the flooding process. Contact angle measurements indicated that lowering the solution salinity could shift the wettability of the system towards intermediate wettability levels and that the UER water exhibits higher shift toward intermediate wettability compared to other waters. Results also indicated that there is no clear correlation between the improvements in oil recovery and interfacial tension and the pH of the studied systems.
机译:低矿化度水驱LOSAL〜(TM)已被用于提高采收率了几十年。从历史上看,这背后的改善采油的物理机制是由于通过注入水的压力维持和位移的油。近日,从实验室和现场试验的证据表明,水也淹没涉及的化学方法和注射盐水的盐度和离子组成可以显著影响采油,修改。关于LOSAL〜(TM)水浸机构几种理论已经在文献中进行了讨论。这些包括降低界面张力,润湿性改变(阳离子交换),pH值(增加)变化,乳液形成和粘土迁移。没有约定的,然而,对于LOSAL〜(TM)驱油机理的研究人员,虽然有限的工作已经在碳酸盐做,有些研究认为,LOSAL〜(TM)对原油采收率没有影响。这项工作提出在水浸ppm的224987使用海水和两个场注入水,庵Eradhuma(UER)在197584 ppm或Simsima(SIM)阿布扎比从卜哈萨领域采取所选择的碳酸芯样品测试的结果。这些结果被用来评估盐水的盐度和离子组成的石灰石岩/盐水/油和系统的可能的相互作用的影响,并确定所述油回收机构。领域注入水稀释至5000和1000ppm和最佳盐度盐度被确定,然后通过改变硫酸盐和钙离子浓度的改变。润湿性变化是通过接触角测量确定。所研究的系统的界面张力测量也以试图评估与LOSAL〜(TM)驱流动机制进行。实验结果表明,在采油显著的改善可以通过注入水的盐度的改变来实现。减少UER水的盐度从197362 ppm至5000ppm的导致油采收的改进从63%至OOIP的84.5%,而后者盐度来评价改变在油回收硫酸盐和钙离子浓度的影响。结果还表明,硫酸盐浓度对驱工艺和,增加硫酸盐浓度超过47ppm的的一些最佳浓度导致对水浸进程产生负面影响的显著效果。接触角测量显示,降低溶液的盐度可以移向中间水平的润湿性的系统的润湿性,而且水UER表现出更高的朝向中间润湿性移相对于其他水域。结果还表明,有在油回收和界面张力的改进和所研究的系统的pH值之间没有明显的相关性。

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