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Prediction of the Kinematic Viscosity of Crude Oil Fractions

机译:原油馏分的运动粘度预测

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A generalized equation based on modified Eyring's theory for predicting kinematic viscosity of petroleum fractions is proposed in this work. The equation uses two reference fluids including a pair of (C6 and C10), (C10 and C14), or (C14 and C20) for petroleum fractions of molecular weight higher than 70 and lower than 300. Validity and accuracy of this equation have been confirmed by comparing the obtained results of this equation with experimental data. In contrast to other correla-tions that require so many specific parameters for oil viscosity prediction, this type of equation requires only molecular weight and true boiling point. The results obtained in this work are in agreement with experimental data with an average absolute deviation (AAD) of less than 5%.
机译:在这项工作中,提出了一个基于改进的艾林理论的广义方程,用于预测石油馏分的运动粘度。该公式对分子量大于70且小于300的石油馏分使用两种参考流体,包括一对(C6和C10),(C10和C14)或(C14和C20)。该方程的有效性和准确性通过将该方程式的获得结果与实验数据进行比较来确定。与其他需要大量特定参数来预测油粘度的相关方法相比,此类方程式仅需要分子量和真实沸点即可。在这项工作中获得的结果与平均绝对偏差(AAD)小于5%的实验数据相符。

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