首页> 外文期刊>Journal of Petroleum and Gas Engineering >Evaluation of rheological properties of Detarium micocarpum, Brachystegea eurycoma using Herschel-Buckley model and their commercial availability
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Evaluation of rheological properties of Detarium micocarpum, Brachystegea eurycoma using Herschel-Buckley model and their commercial availability

机译:用Herschel-Buckley模型评估麦角果tar,Brachystegea eurycoma的流变特性及其商业价值

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Drilling fluids were formulated from biomaterials such as Brachystegea eurycoma and Detarium micocarpum. The laboratory measurements were carried out, and their rheological properties then evaluated. The drilling properties such as yield point, apparent viscosity, and low shear rate yield point were determined from the experimental data. The field polypac additive that is currently in use was formulated and used as control sample to biomaterial products. Both were supplemented with equal concentrations of XC polymer additive and potassium chloride, weighted up with calcium carbonate and barite. Herschel-Buckley model was used to obtain the yield stress. Regression line was established. Plots of cutting transport ratio versus fluid flow rate, and cuttings concentration versus average annular velocity of the biomaterial mud and the existing polypac mud were made at both low and high flow rates for 8½ inch hole diameter. The biomaterial mud was compared with the existing polypac mud and results show that yield stress for low solids, and barite weighted muds are 36 and 30 lbs/100 ft2 for biomaterial muds, respectively. The results for low solids and weighted muds of the existing polypac muds also show the yield stress of 35, 26 and 6 lbs/100 ft2 for both regression lines. The plots of transport ratio versus fluid flow rate and cuttings concentration versus annular velocity for both biomaterial mud and the existing Polypac mud gave the same trend. Both mud types show good hole cleaning at high flow rates and small diameter holes. The investigations also show that biomaterial products are not commercially available to be used in preparing drilling fluids.
机译:钻井液由诸如Brachystegea eurycoma和Mitarcarpum的生物材料配制而成。进行实验室测量,然后评估其流变性。由实验数据确定了诸如屈服点,表观粘度和低剪切速率屈服点的钻井特性。配制了目前正在使用的现场聚pac添加剂,并用作生物材料产品的对照样品。两者均补充有相同浓度的XC聚合物添加剂和氯化钾,并加入碳酸钙和重晶石。使用Herschel-Buckley模型获得屈服应力。建立回归线。在低流速和高流速下,对于8½英寸的孔直径,都绘制了切削传输率与流体流速的关系曲线,以及切削物浓度与生物材料泥浆和现有的polypac泥浆的平均环形速度的关系图。将生物材料泥与现有的polypac泥进行了比较,结果表明,低固体含量的屈服应力和重晶石称重的生物材料泥分别为36 lbs和30 lbs / 100 ft2。现有的polypac泥浆的低固含量和称重泥浆的结果还显示,两条回归线的屈服应力分别为35、26和6 lbs / 100 ft2。对于生物材料泥浆和现有的Polypac泥浆,输送比与流体流速,碎屑浓度与环向速度的关系图具有相同的趋势。两种类型的泥浆在高流速和小直径孔的情况下均显示出良好的孔清洁效果。调查还显示,生物材料产品在商业上不可用于制备钻井液。

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