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The Impact of Core Firing on EOR of Low Salinity-Surfactant Flooding

机译:核心射击对低盐度 - 表面活性剂洪水的影响

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The combination of injection of lower saline brine and surfactant will increase recovery in sandstone rocks than either when any of the techniques is singly applied. In this work, core IFT test, pH test, flooding experiments and measurement of dispersion were performed on four core samples which were grouped into two: group A which were not fired and group B which were fired at a temperature of 500°C for 24 hours. Two low saline brines were prepared: LS1 which was derived by the dilution of seawater four times and LS2 which was derived by ten times diluting the seawater. The surfactant used was ethoxylated alcohol surfactant. Coreflood experiments were then performed on the rock samples starting with the injection of low saline followed by low saline brine combined with surfactant (LSS). Results from the experiments show that with the injection of LS1 brine and LSS1 higher increment in recoveries were obtained for group B than for group A cores. The same trend was also noticed with the injection of LS2 and LSS2. From the results, LS1 gave higher increment in oil recovery than LS2. Also LSS1 gave higher recoveries when compared with LSS2. In all the cases tested, core samples which were fired gave higher recoveries even though they had low permeabilities of 993 md for sample 3 and 1017 md for sample 4 than those which were not fired with higher permeabilities of 1050 md and 1055 md for samples 1 and 2 respectively. This was attributed to the alteration of wettability as well as that of permeability caused by sample firing. The dispersion profiles of the rock samples show that all samples are homogeneous.
机译:注射低盐水盐水和表面活性剂的组合将增加砂岩岩石中的恢复,而不是单独施加任何技术。在这项工作中,对四个核心样品进行核心IFT测试,pH试验,泛洪实验和分散体的测量,该核样品被分成二:A组,其未烧制,并且在500℃的温度下烧制的B组24小时。制备了两种低盐水盐水:LS1由稀释的海水稀释,LS2衍生10次稀释海水的10次。所用的表面活性剂是乙氧基化醇表面活性剂。然后对岩石样品进行岩体实验,从注射低盐水开始,然后用低盐水盐水结合表面活性剂(LSS)。实验结果表明,通过注射LS1盐水和LSS1的RECHCOLIES的较高,对于组核,获得群体的较高。注射LS2和LSS2也注意到相同的趋势。从结果,LS1比LS2更高的储油增量。与LSS2相比,LSS1还具有更高的回收率。在所有测试的情况下,烧制的核心样品使得较高的回收率,即使样品3和1017md的样品4的渗透率低于样品4的样品4的渗透率,而不是未烧成1050md的1050 md和1055 md的样品1分别为2。这归因于润湿性的改变以及样品烧制引起的渗透性。岩石样品的分散谱表明所有样品均匀。

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