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Barite–Micromax mixture, an enhanced weighting agent for the elimination of barite sag in invert emulsion drilling fluids

机译:重晶石-Micromax混合物,一种增强的增重剂,用于消除反相乳液钻井液中的重晶石下陷

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Weighting agents are mixed with the drilling mud to provide the high density required to control high-pressure high-temperature (HPHT) wells throughout the drilling operation. Solids sag occurs when the weighting agent separates from the liquid phase and settles down, causing variations in the drilling fluid density. This study evaluates barite–manganese tetroxide (Micromax) mixture to eliminate solids sag issue encountered with weighted invert emulsion drilling fluids at HPHT conditions. Micromax additive was added to barite-weighted fluids in different concentrations, 0, 15, and 30?wt% of the total weighting agent. Static and dynamic sag tests were used to evaluate the sag tendency of the new formulation under static and dynamic conditions. The performance of the new formulation was evaluated by measuring the electrical stability, density, rheological, viscoelastic, and filtration properties of the drilling fluid. The obtained results showed that Micromax additive improves drilling fluid stability by reducing the sag tendency. Adding only 30?wt% of Micromax additive eliminated barite sag issue in both dynamic and static conditions at 350?°F. 30?wt% Micromax increased the base fluid density by 5.4% and the yield point by 115% and maintained the gel strength value at 12?lb/100?ft2, while it reduced the plastic viscosity by 30%. The addition of Micromax additive improved the viscoelastic properties of the drilling fluid by maintaining a higher storage modulus to the loss modulus ratio when compared with the barite sample (in the range 4–4.5). Furthermore, 30?wt% Micromax improved the filtration performance by reducing the filtrate volume, filter cake weight, and filter cake thickness by 50%.
机译:增重剂与钻井泥浆混合,以提供在整个钻井过程中控制高压高温(HPHT)井所需的高密度。当增重剂从液相中分离并沉降时,会发生固体下垂,从而导致钻井液密度变化。这项研究评估了重晶石-四氧化锰(Micromax)混合物,以消除HPHT条件下加重的反相乳液钻井液遇到的固体流挂问题。将Micromax添加剂以总浓度的0、15和30wt%的不同浓度添加到重晶石称重的流体中。使用静态和动态流挂测试来评估新配方在静态和动态条件下的流挂趋势。通过测量钻井液的电稳定性,密度,流变学,粘弹性和过滤性能来评估新配方的性能。所得结果表明,Micromax添加剂可通过降低下垂趋势来提高钻井液的稳定性。仅添加30wt%的Micromax添加剂消除了在350?F的动态和静态条件下的重晶石下垂问题。 30%(重量)的Micromax使基础流体密度提高了5.4%,屈服点提高了115%,凝胶强度值保持在12µlb / 100?ft2,而塑性粘度降低了30%。与重晶石样品相比,添加Micromax添加剂可通过保持较高的储能模量与损耗模量比(在4-4.5范围内)来改善钻井液的粘弹性。此外,30%(重量)的Micromax通过将滤液体积,滤饼重量和滤饼厚度减少50%而改善了过滤性能。

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