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Rheological behavior and temperature dependency study of Sara line-based super lightweight completion fluid

机译:基于Sara系列的超轻质完井液的流变行为和温度依赖性研究

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This article presents a rheological and statistical evaluation of Saraline-based super lightweight completion fluid (SLWCF) and its effect on operating temperature. In this work, eight rheological models, namely the Bingham plastic, Ostwald-de Waele, Herschel-Bulkley, Casson, Sisko, Robertson-Stiff, Heinz-Casson, and Mizrahi-Berk, were used to describe the rheological behavior of the fluid, and the results were compared with Sarapar-based SLWCF. The results showed that the fluid was best described by both the Sisko and the Mizrahi-Berk models. These two models seem to be able not only to describe the relationship between shear rate and shear stress accurately but also able to accommodate the physical characteristics of the fluids. In the study of fluid viscosity dependency on temperature, the experimental data showed that the viscosity of Sarapar-based SLWCF almost doubled the viscosity of Saraline-based SLWCF. Furthermore, the activation energy seemed to decrease dramatically for both fluids at low shear and tended to remain constant at a higher shear rate. However, Saraline-based SLWCF seemed to be less dependent on temperature, and its behavior could be described by the power equation. Results also showed that the viscosity of the Saraline-based SLWCF was more sensitive to temperature changes at low shear rates. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了基于Saraline的超轻质完井液(SLWCF)的流变学和统计评估及其对工作温度的影响。在这项工作中,使用八种流变模型(分别是宾厄姆塑料,Ostwald-de Waele,Herschel-Bulkley,Casson,Sisko,Robertson-Stiff,Heinz-Casson和Mizrahi-Berk)来描述流体的流变行为,并将结果与​​基于Sarapar的SLWCF进行了比较。结果表明,Sisko模型和Mizrahi-Berk模型均能最好地描述流体。这两个模型似乎不仅能够准确地描述剪切速率与剪切应力之间的关系,而且能够适应流体的物理特性。在研究流体粘度对温度的依赖性时,实验数据表明,基于Sarapar的SLWCF的粘度几乎是基于Saraline的SLWCF粘度的两倍。此外,对于两种流体,在低剪切下的活化能似乎都急剧下降,并且在较高剪切速率下趋于保持恒定。但是,基于Saraline的SLWCF似乎对温度的依赖性较小,其行为可以用功率方程式描述。结果还表明,基于Saraline的SLWCF的粘度在低剪切速率下对温度变化更为敏感。 (C)2015 Elsevier B.V.保留所有权利。

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