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Optimizing the strength and size of preformed particle gels for better conformance control treatment

机译:优化预制颗粒凝胶的强度和尺寸,以更好地进行一致性控制处理

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A newer trend in gel treatments is using preformed particle gel (PPG) to reduce fluid channels through super-high permeability streaks/fractures and thus to decrease water production and increase sweep efficiency for mature oilfields. The success of a PPG treatment mainly depends on whether or not the PPG can effectively reduce the permeability of the channels to an appropriate level. This work sought to determine what factors significantly influence the blocking efficiency of PPG in fluid channels. A transparent filtration model was designed to observe the compression of gel particles in fluid channels at several differential pressures and to study the effect of various parameters, such as brine concentrations and particle sizes, on PPG blocking efficiency. The results suggested that rather than fully blocking the channel, a permeable gel pack was formed in the fluid channel by gel particles, and its permeability was dependent on the gel strength, particle size, and load pressure. The gel pack permeability decreased as the gel strength, particle size, and load pressure increased. Thus, the blocking efficiency of the particle gel on a channel is increased if large sizes or/and strong particles are used. The gel pack permeability was a few hundred millidarcies before the load pressure was applied; it decreased to less than 10 md when the load pressure rose. The results also indicated that the PPG pack was compressible and its compressibility decreased as the load pressure increased. These results can be effectively used to optimize a PPG design. A gel pack that has a desired permeability can be devised by selecting the proper gel strength and particle size corresponding to the reservoir pressure. This is essential for a successful gel treatment so as to reduce the permeability to a manageable preplanned degree. (C) 2015 Elsevier Ltd. All rights reserved.
机译:凝胶处理的新趋势是使用预制颗粒凝胶(PPG)来减少超高渗透性条纹/裂缝所形成的流体通道,从而减少水的产生并提高成熟油田的扫除效率。 PPG治疗的成功主要取决于PPG是否可以有效地将通道的通透性降低至适当水平。这项工作试图确定哪些因素显着影响PPG在流体通道中的阻塞效率。设计了一个透明的过滤模型,以观察在几个压差下流体通道中凝胶颗粒的压缩情况,并研究各种参数(例如盐水浓度和粒径)对PPG封堵效率的影响。结果表明,不是完全阻塞通道,而是由凝胶颗粒在流体通道中形成了可渗透的凝胶包装,其渗透性取决于凝胶强度,颗粒大小和负载压力。凝胶包装的渗透性随凝胶强度,粒度和负载压力的增加而降低。因此,如果使用大尺寸或/和强颗粒,则颗粒凝胶在通道上的阻塞效率增加。在施加负载压力之前,凝胶包装的渗透性为几百毫达西。当负载压力上升时,它降低到小于10 md。结果还表明,PPG包装是可压缩的,并且随着负载压力的增加,其可压缩性降低。这些结果可以有效地用于优化PPG设计。通过选择适当的凝胶强度和相应于储层压力的粒径,可以设计出具有所需渗透性的凝胶袋。这对于成功进行凝胶处理以将渗透性降低到可控的预定程度至关重要。 (C)2015 Elsevier Ltd.保留所有权利。

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