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Do Complex Super-Gel Liquids Perform Better Than Simple Linear Liquids in Hole Cleaning With Coiled Tubing?

机译:复杂的超凝胶液体比用卷绕管孔清洁的简单线性液体表现更好吗?

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The properties of the circulation fluid have a fundamental effect on solids transport. The shear stress at the solids bed and liquid interface, for a near horizontal wellbore, plays the key role in transport of the solids. The flow regime, geometric combination of hole/coiled tubing (CT) and eccentricity, also effect the rheological state of the liquid and have a significant impact on the solids transport efficiency. There is a need to differentiate between the superior solids suspension capabilities of the liquid and its hole cleaning efficiency produced when it is in motion. The most important concept is that, the greater the solids carrying capacity a fluid has, the more efficiently the hole can be cleaned. The challenge that presents itself is that once the solids fall and form a bed within the wellbore, how can the solids be re-entrained and transported out of the hole? In this paper, solids transport studies with several bio-polymers were conducted with a sophisticated flow loop. These studies highlight that these types of fluids bring some advantages and disadvantages. The carrying capacity and suspension properties of these fluids are superior but were hindered by other geometric influences on the velocity profile. Solids entrainment and re-entrainment into the fluid, as would be expected, is difficult to achieve without mechanical assistance. However, excellent efficiency of the fluid can be obtained and this paper presents some of the conditions under which this is practically achieved.
机译:循环液的性质对固体运输具有根本的影响。固体床和液面界面的剪切应力,用于近水平井筒,起到固体运输中的关键作用。流动制度,孔/线圈管(CT)和偏心率的几何组合,也影响了液体的流变状态,对固体运输效率产生显着影响。需要区分液体的优异固体悬浮能力及其在运动时产生的孔清洁效率。最重要的概念是,载物能力越大的含水量,孔可以更有效地清洁。提出本身的挑战是,一旦固体落下并在井筒内形成床,就如何重新夹带固体并从孔中运输出来?在本文中,用复杂的流动回路进行具有几种生物聚合物的固体运输研究。这些研究突出了这些类型的流体带来了一些优点和缺点。这些流体的承载能力和悬浮特性是优异的,但是通过对速度分布的其他几何影响受到阻碍。固体夹带和重新夹具进入流体,如预期,难以实现而没有机械辅助。然而,可以获得液体的优异效率,本文呈现了实际实现的一些条件。

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