脂肪酸固体润滑剂与液体润滑剂性能的实验室评价比较研究

Munirah Bukhawwah, Sarah Alrammah
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摘要

高扭矩和摩擦系数是钻井过程中的主要挑战。提供润滑有助于减少扭矩和阻力,提高水基流体和采出水中的钻速(ROP)。润滑油是惰性的,因此,它们不会与其他流体添加剂或岩屑发生反应,也不会影响流体的流变性。石油和天然气行业的所有润滑剂都是液体形式,通常用于减少扭矩和降低摩擦系数,它们有不同的化学成分,有毒的润滑剂矿物油和无毒的植物润滑剂,他们有很多论文谈论它们如何作为润滑剂,但随着新一代固体润滑剂的出现,它将改变整个行业。粉末状封装润滑剂添加剂包括与惰性固体基材混合的液体润滑剂。由此获得的固体润滑剂添加剂组合物有利于在钻井液中使用。脂肪酸固体润滑剂是上述粉末状润滑剂的一种。它是一种干燥形式的封装润滑剂,由含有油的微细胶囊组成,直到足够的操作压力,摩擦或剪切破坏封装以释放所需的油。在本文中,我们提出了一个测试计划,脂肪酸固体润滑剂的实验室结果,并将结果与具有相同组份的液体润滑剂在三种盐(盐水)中的结果进行比较,以了解固体和液体形式之间的效率范围。
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Laboratory Evaluation Comparison Study Between the Performance of Fatty Acid Solid Lubricant and Liquid Lubricant
High torque and friction factors are major challenges while drilling. Providing lubrication helps in reducing torque and drag and increasing rate of penetration (ROP) in water-based fluids and produced water. The lubricants are inert hence, they do not react with other fluid additives or cuttings and will not affect fluid rheology. All Lubricants in the oil and gas industry are in liquid form and usually used to reduce torque and decrease coefficients of friction, they came in different chemical compositions a toxic lubricant mineral oil and non-toxic vegetable lubricants, and they have many papers talk about how they function as lubricants, but with a new generation of solids lubricants, it will be changing the whole industry. Powdered encapsulated lubricant additive comprises a liquid lubricant blended with an inert solid substrate. The solid lubricant additive compositions thus, obtained are advantageously employed in drilling fluids. Fatty acid solid lubricant is one of the aforementioned powdered lubricants. It is a dry form encapsulated lubricant composed of micronized capsules containing oil that remains held until sufficient operational pressure, friction, or shear break the encapsulation to release the oil on demand. In this paper, we present a testing plan, lab results of fatty acid solid lubricant, compare and contrast results with liquid lubricants that had the same component group in three types of salts (brine) to see the range of efficiency between solid and liquid forms.
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