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Prevention of Barite Sag in Oil-Based Drilling Fluids Using a Mixture of Barite and Ilmenite as Weighting Material

机译:使用重晶石和Ilmenite的混合物作为加重材料的油基钻井液中的重晶石凹陷

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摘要

Drilling high-pressure high-temperature (HPHT) wells requires a special fluid formulation that is capable of controlling the high pressure and is stable under the high downhole temperature. Barite-weighted fluids are common for such purpose because of the good properties of barite, its low cost, and its availability. However, solids settlement is a major problem encountered with this type of fluids, especially at elevated downhole temperatures. This phenomenon is known as barite sag, and it is encountered in vertical and directional wells under static or dynamic conditions leading to serious well control issues. This study aims to evaluate the use of barite-ilmenite mixture as a weighting agent to prevent solids sag in oil-based muds at elevated temperatures. Sag test was conducted under static conditions (vertical and inclined) at 350 °F and under dynamic conditions at 120 °F to determine the optimum ilmenite concentration. Afterward, a complete evaluation of the drilling fluid was performed by monitoring density, electrical stability, rheological and viscoelastic properties, and filtration performance to study the impact of adding ilmenite on drilling fluid performance. The results of this study showed that adding ilmenite reduces sag tendency, and only 40 wt.% ilmenite (from the total weighting material) was adequate to eliminate barite sag under both static and dynamic conditions with a sag factor of around 0.51. Adding ilmenite enhanced the rheological and viscoelastic properties and the suspension of solid particles in the drilling fluid, which confirmed sag test results. Adding ilmenite slightly increased the density of the drilling fluid, with a slight decrease in the electrical stability within the acceptable range of field applications. Moreover, a minor improvement in the filtration performance of the drilling fluid and filter cake sealing properties was observed with the combined weighting agent. The findings of this study provide a practical solution to the barite sag issue in oil-based fluids using a combination of barite and ilmenite powder as a weighting agent to drill HPHT oil and gas wells safely and efficiently with such type of fluids.
机译:钻孔高压高温(HPHT)孔需要一种特殊的流体配方,其能够控制高压并且在高井下温度下稳定。由于重晶石的良好性能,其低成本及其可用性,重晶石加权流体对于这种目的是常见的。然而,固体沉降是这种类型的流体遇到的主要问题,特别是在井下温度升高。这种现象称为晶片下垂,在静态或动态条件下在垂直和定向井中遇到,导致严重良好的控制问题。本研究旨在评估Marite-Ilmenite混合物作为加重剂的使用,以防止在升高的温度下油基泥浆中的固体下垂。在350°F的静态条件下(垂直和倾斜)并在120°F的动态条件下进行SAG测试,以确定最佳的ILMENITE浓度。之后,通过监测密度,电稳定性,流变学和粘弹性性能,过滤性能来研究钻孔流体的完全评估,以研究添加钛铁矿对钻井液性能的影响。该研究的结果表明,添加钛铁矿降低了下垂趋势,并且仅为40重量%。%Ilmenite(来自总加权材料)足以消除在静态和动态条件下的重晶石凹陷,其凹陷率约为0.51。添加钛铁矿增强了钻井液中固体颗粒的流变和粘弹性和悬浮液,这证实了SAG测试结果。添加Ilmenite略微增加钻井液的密度,在可接受的现场应用范围内的电稳定性略有降低。此外,用组合的加权剂观察到钻孔流体和滤饼密封性能的过滤性能的微小改善。本研究的结果提供了在油基流体中使用重晶石和Ilmenite粉末作为加重剂的实际解决方案,以安全,有效地用这种类型的流体安全有效地钻合HPHT油气井。

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