首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Analytical solution of mixed electro-osmotic/pressure driven flows of viscoelastic fluids in microchannels
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Analytical solution of mixed electro-osmotic/pressure driven flows of viscoelastic fluids in microchannels

机译:电渗/压力驱动的微通道粘弹性流体混合流动的解析解

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Analytical solutions are presented for the flow of viscoelastic fluids in micron sized ducts, namely between parallel plates and pipes under the combined influence of electrokinetic and pressure forces using the Debye-Huckel approximation, including the limit case of pure electro-osmotic flow. The viscoelastic fluids used are described by the simplified Phan-Thien-Tanner model (sPTT), with linear kernel for the stress coefficient function, and zero second normal stress difference, and the FENE-P model, based on the kinetic theory for finitely extensible dumbbells with a Peterlin approximation for the average spring force. The solution is non-linear with a significant contribution arising from the coupling between the electric and pressure potentials. This term acts as a drag reducer and a drag increaser under favorable and adverse pressure gradients, respectively and contrasts with the Newtonian flow case, for which it does not exist, demonstrating that the superposition principle valid for Newtonian fluids no longer applies when non-linear viscoelastic fluid models are considered. The combined effects of fluid rheology, electro-osmotic and pressure gradient forcing on the fluid velocity distribution and fluid stresses are also discussed. The analysis of the streaming potential is also included.
机译:提出了解析力解的解决方法,包括使用纯电动渗流的极限情况,通过Debye-Huckel近似在电动势和压力共同作用下在微米级管道中(即在平行板和管道之间)的粘弹性流体的流动。通过简化的Phan-Thien-Tanner模型(sPTT)描述了所使用的粘弹性流体,其中线性核用于应力系数函数,零秒法向应力差以及FENE-P模型(基于有限可扩展动力学理论)以Peterlin近似的哑铃为平均弹簧力。该解决方案是非线性的,其中电势和压力势之间的耦合会产生很大的影响。该术语分别在有利和不利压力梯度下分别用作减阻剂和减阻剂,并且与不存在的牛顿流情况形成对比,这表明在非线性时不再适用于牛顿流体的叠加原理考虑粘弹性流体模型。还讨论了流体流变学,电渗和压力梯度强迫对流体速度分布和流体应力的综合影响。还包括对流媒体潜力的分析。

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