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Modeling Coupled Heat and Mass Transfer in Peristaltic Cylindrical Flow of Robertson-Stiff Fluid

机译:罗伯逊僵硬液体蠕动圆柱形流动耦合热量和传质

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摘要

The Robertson-Stiff fluid (RS) is a yield-pseudo-plastic model which has been used to describe the rheological properties of drilling fluids, cement slurries and bentonite suspensions. Experimentally, several rheological data showed that this model provides more consistently accurate descriptions of the rheology of such fluids than other viscoplastic models. This result motivates us to study theoretically the peristaltic transport for this shear-thinning model and for other viscoplastic models in the presence of heat and mass transfer in a cylindrical tube. For long wavelength and low Reynolds number approximations, an analytical solution is obtained. The results showed that the velocity and the temperature decrease with increasing the yield parameter and the power index while they increase with the increase in the occlusion parameter. We also observed an opposite behavior of the concentration versus these physical parameters. Moreover, all these parameters enhance the mechanical efficiency of pumping. In addition, the comparison shows that the velocity, temperature and the absolute value of concentration are greater for the proposed model than those of IIerschel-Bulkley, Bingham and Casson models, respectively.
机译:罗伯逊僵硬的液体(RS)是产量 - 伪塑料模型,用于描述钻井液,水泥浆料和膨润土悬浮液的流变性质。通过实验,几个流变数据显示,该模型提供比其他粘胶塑料模型的这种流体的流变学更加准确的描述。该结果激发了我们在理论上研究这种剪切稀疏模型的蠕动传输,以及在圆柱形管中存在热​​量和质量传递的情况下的其他粘胶模型。对于长波长和低雷诺数近似,获得分析解决方案。结果表明,随着封闭参数的增加而增加,随着产量参数和功率指数的增加,速度和温度降低。我们还观察到浓度与这些物理参数相反的相反行为。此外,所有这些参数都提高了泵送的机械效率。此外,比较表明,拟议模型的速度,温度和绝对值分别比Iierschel-Bulkley,Bingham和Casson模型更大。

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