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Investigation of non-Newtonian flow characterization and rheology of heavy crude oil

机译:重牛油流量表征和重型原油流变的研究

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The heavy crude oil exhibits a non-Newtonian shear thinning behavior over the examined shear rate. The viscosity of the heavy crude oil decreases about 15.6% when the temperature increased from 30 to 60 degrees C. Heavy crude oil was blended with the aqueous solution of surfactant and saline water in different volumetric proportions of NaCl, and Na2CO3 solution mixtures. The addition of 50% of the mixture to the heavy crude oil causes a strong reduction in the viscosity, about 67.5% at 60 degrees C. The heavy crude oil fits the Power law model since it has the lowest average absolute percent error of 0.0291. The flow behavior index of the heavy crude oil reaches a value of 0.9305 at a temperature of 30 degrees C and it increases to 0.9373 when the temperature raises 60 degrees C, while the consistence coefficient decreases from 2.8811 to 2.3558.
机译:大量原油在检查的剪切速率上显示出非牛顿剪切稀疏行为。 当温度从30至60℃的温度增加时,重原油的粘度降低约15.6%。将重原油与NaCl和Na 2CO3溶液混合物的不同体积比例的表面活性剂和盐水水溶液混合。 向重原油中加入50%的混合物导致粘度的强烈降低,约67.5%在60摄氏度下。重型原油适合电力法模型,因为它具有0.0291的最低平均绝对误差误差。 重原油的流动性指数在30摄氏度的温度下达到0.9305的值,并且当温度升高60℃时,它增加到0.9373,而一致系数从2.8811降至2.3558。

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