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Effect of Low Salinity Waterflooding on Sweep Efficiency in Multilayered Clay-Rich Sandstone Reservoirs

机译:低盐水对多层粘土砂岩储层扫描效率的影响

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Over the past two decades, low salinity waterflooding has emerged as a successful tertiary recovery method. Several mechanisms have been suggested to contribute to the effect of the low salinity waterflooding. Fines migration in clay containing sandstones is amongst the main reasons attributed to the success of this technique. The effect resulting from the migration of fines helps homogenize the flow pattern of the waterfront, thus achieving better displacement efficiency. Little or no attention has been given to the effect of water blockage on multilayered reservoirs. The present work aims to study the effect of low salinity waterflooding on multilayered clay-rich sandstone reservoirs. Parallel coreflood experiments were used to investigate the effect of low salinity waterflooding on multilayered reservoirs. Clay-rich Bandera sandstone cores were used for the experiment. Cores from two different blocks were used to obtain a contrast in the absolute permeability. All cores were saturated with the same high salinity formation water and then displaced with oil to reach initial water saturation. The cores were then aged at the reservoir temperature for 21 days. Three parallel coreflood experiments were used to compare the high salinity waterflooding to the low salinity waterflooding in both secondary and tertiary modes. Core effluent and CT scan were used to evaluate the recovery from all experiments. The high salinity waterflooding shows heterogeneous water invasion, and more oil was recovered from the higher permeability core. Alternatively, the low salinity waterflooding in secondary mode showed a more homogeneous recovery regime, as the water blockage kept the waterfront advancement even between cores. Finally, the application of low salinity waterflooding in tertiary mode slightly improved the recovery from both cores equally. This work is the first to emphasize the benefits of low salinity waterflooding in multilayered clay- rich sandstones. The conclusions from this work suggest a diversion effect to occur allowing for higher displacement efficiencies in multilayered clay-rich reservoirs.
机译:在过去的二十年中,低盐度水泡作为成功的第三次恢复方法。已经提出了几种机制促进了低盐度的效果。含有砂岩的粘土中的鳍迁移是归因于这种技术成功的主要原因。由罚款迁移产生的效果有助于均匀化江边的流动模式,从而实现更好的位移效率。已经对多层储存器对水堵塞的影响很少或没有注意。本工作旨在研究低盐度水料对多层粘土砂岩储层的影响。并行核心实验用于研究低盐度水在多层贮存器上的效果。富含粘土的Bandera砂岩核心用于实验。来自两个不同块的核心用于在绝对渗透性中获得对比度。所有芯均用相同的高盐度形成水饱和,然后用油置换以达到初始水饱和度。然后将核心在储层温度下老化21天。三个平行的内核实验用于将水上高盐度的高盐度与二级和三次模式中的低盐度进行比较。核污水和CT扫描用于评估所有实验中的恢复。高盐度水源性显示出非均相水侵入,从较高的渗透核中回收更多的油。或者,次级模式中的低盐度呈现出更均匀的恢复制度,因为即使在核之间也保持垂直的滨水区段。最后,在三级模式下的低盐度水上的应用略微改善了两种核心的恢复。这项工作是第一个强调多层粘土砂岩中低盐度的益处的益处。这项工作的结论表明,发生转移效果,以允许多层粘土水库中的较高位移效率。

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