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Development of Novel Composition for Controlling Moderate to Severe Losses

机译:用于控制中等至重度损失的新型组合物的发展

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The loss circulation composition comprising the nanosilica based dispersion and a chemical activator has been designed to treat moderate to severe losses. The nanomaterial used in this loss circulation composition is an environmentally friendly material and a chemical activator. The loss circulation composition is so designed so as to give delayed gelling of the nanoparticle based dispersion. A major advantage of this technology is its ability to place the loss circulation treatment composition in to the target loss circulation zone before the nanoparticle based dispersion gels up. Premature gelling of the nanoparticle based dispersion would avoid premature setting of the treatment fluid before it reaches the target zone. The newly developed system can be used effectively up to 300° F. In this paper, experiments have been performed with three different types of nanoparticles differing in their surface charges and particle sizes. Two negatively charged nanoparticle-based dispersion with a particle size of 5nm and 17nm respectively and one positively charged nanoparticle with a particle size greater than 17nm have been evaluated as loss circulation materials. Two different types of chemical activators, one organic and the other inorganic have been used in this study and their effect on the gelling time has been evaluated. The gelling time experiments have been done at four different temperatures viz. 150° F, 200° F, 250° F and 300° F. The effect of activator concentration and different shear rates on the gelling time of the three nanoparticle-based dispersions has been studied. Permeability plugging tests have been performed on the three nanoparticle-based dispersions using 2mm slotted disks and their effectiveness in controlling moderate to severe losses has been evaluated The loss circulation composition can be designed so as to control its gelling time by adjusting the activator concentration. The results show that a specific gelling time of the loss circulation composition can be obtained to achieve a predictable and controllable pumping time. This pumping time can range from a few minutes to several hours at over a wide range of temperatures. A predictable gelling time would allow the nanoparticle-based dispersion to remain pumpable for sufficient time before being placed in the loss circulation zone. The loss circulation composition which turns from a liquid to a gelled solid is then expected to seal off the loss circulation zone and thereby prevent fluid loss.
机译:遗失循环组合物包含纳米硅基分散体和化学活化剂,设计用于治疗中度至严重损失。在该损失循环组合物中使用的纳米材料是环保材料和化学活化剂。损耗循环组合物如此设计,以便给出基于纳米粒子的分散体的延迟胶凝。该技术的主要优点是它在基于纳米粒子的分散凝胶之前将损失循环处理组合物放入目标损失循环区的能力。基于纳米粒子的分散体的过早胶凝将避免在到达目标区域之前的处理流体的早产。新开发的系统可以有效地使用高达300°F。在本文中,已经用三种不同类型的纳米颗粒在其表面电荷和颗粒尺寸下进行了实验。分别为粒径为5nm和17nm的两个带负电的纳米粒子分散体,并且已经评估了粒度大于17nm的带正电荷的纳米颗粒被评估为损耗循环材料。在本研究中使用了两种不同类型的化学活化剂,一种有机和其他无机,并评估了对胶凝时间的影响。凝胶时间实验已经在四种不同的温度下进行。已经研究了150°F,200°F,250°F和300°F。研究了活化剂浓度和不同剪切速率对三个基于纳米粒子的分散体的胶凝时间的影响。已经对使用2mm开槽盘的三个纳米颗粒类分散体进行渗透性堵塞试验,并评估了它们控制中度至严重损失的有效性,可以设计损失循环组合物,以通过调节活化剂浓度来控制其胶凝时间。结果表明,可以获得损失循环组合物的特定胶凝时间以实现可预测和可控的泵送时间。这种泵送时间可以在很短的温度下几分钟到几小时。可预测的胶凝时间将允许基于纳米颗粒的分散体在放置在损耗循环区之前保持足够的时间以保持泵送。然后预期从液体转向凝胶固体的损耗循环组合物,以密封损耗循环区,从而防止流体损失。

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