首页> 外文会议>ASME international mechanical engineering congress and exposition >ANALYSIS OF COMBINED ELECTROOSMOTIC AND PRESSURE DRIVEN FLOW OF MULTILAYER IMMISCIBLE FLUIDS IN A NARROW CAPILLARY
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ANALYSIS OF COMBINED ELECTROOSMOTIC AND PRESSURE DRIVEN FLOW OF MULTILAYER IMMISCIBLE FLUIDS IN A NARROW CAPILLARY

机译:毛细管中多层不混溶流体的电渗流与压力驱动流联合分析

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This paper presents the analytical solution of a combined electroosmotic and pressure driven flow of multilayer immiscible fluids in a narrow capillary. The mathematical model is based in the Poisson-Boltzmann equation and the modified Navier-Stokes equations. In the steady-state analysis, we consider different conditions at the interfaces between the fluids as potential differences, surface charge densities and electro-viscous stresses balances, which are discussed in detail. Results show the transport phenomena coupled in the description of velocity distribution, by the analyzing of the dimensionless parameters obtained, such as: potential differences, surface charge densities, electrokinetic parameters, term involving the external pressure gradient, ratios of viscosity and of dielectric permittivity. Here, the presence of a net electric charges balance at the interfaces breaks the continuity of the electric potential distributions and viscous shear stresses, modifying the flow field; thus, the electrical conditions established at the interfaces play an important role on the flow behavior. The present work, in which the velocity field is described, aims to be an important contribution in the development of theoretical models that provide a better understanding about labs-on-a-chip design.
机译:本文介绍了在窄毛细管中多层不混溶流体的电渗和压力驱动相结合的流动的分析解决方案。该数学模型基于Poisson-Boltzmann方程和改进的Navier-Stokes方程。在稳态分析中,我们将流体之间的界面处的不同条件视为电势差,表面电荷密度和电粘应力平衡,对此进行了详细讨论。结果表明,通过分析获得的无量纲参数,如速度差,表面电荷密度,电动参数,涉及外部压力梯度的术语,粘度和介电常数的比值,在描述速度分布时耦合了传输现象。在此,界面处净电荷平衡的存在破坏了电势分布和粘性剪切应力的连续性,从而改变了流场。因此,在界面处建立的电条件对流动行为起着重要作用。本文描述了速度场,旨在为理论模型的发展做出重要贡献,从而为片上实验室设计提供更好的理解。

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