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Modeling fluid transport in 2D paper networks

机译:2D纸网络中的液体运输建模

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Paper-based microfluidic devices offer great potential as a low-cost platform to perform chemical and biochemical tests. Commercially available formats such as dipsticks and lateral-flow test devices are widely popular as they are easy to handle and produce fast and unambiguous results. While these simple devices lack precise control over the flow to enable integration of complex functionality for multi-step processes or the ability to multiplex several tests, intense research in this area is rapidly expanding the possibilities. Modeling and simulation is increasingly more instrumental in gaining insight into the underlying physics driving the processes inside the channels, however simulation of flow in paper-based microfluidic devices has barely been explored to aid in the optimum design and prototyping of these devices for precise control of the flow. In this paper, we implement a multiphase fluid flow model through porous media for the simulation of paper imbibition of an incompressible, Newtonian fluid such as when water, urine or serum is employed. The formulation incorporates mass and momentum conservation equations under Stokes flow conditions and results in two coupled Darcy's law equations for the pressures and saturations of the wetting and non-wetting phases, further simplified to the Richard's equation for the saturation of the wetting fluid, which is then solved using a Finite Element solver. The model tracks the wetting fluid front as it displaces the non-wetting fluid by computing the time-dependent saturation of the wetting fluid. We apply this to the study of liquid transport in two-dimensional paper networks and validate against experimental data concerning the wetting dynamics of paper layouts of varying geometries.
机译:基于纸质的微流体装置提供了作为低成本平台的潜力,以进行化学和生化测试。商业上可获得的格式,如Dipsticks和横向 - 流量测试装置广泛流行,因为它们易于处理并产生快速和明确的结果。虽然这些简单的设备缺乏对流量的精确控制,但能够实现复杂功能的多步过程或多重测试的能力,这一领域的激烈研究正在迅速扩大这种可能性。建模和仿真越来越多的工具在获得驱动通道内的过程的潜在物理学的洞察中,但是探测基于纸质的微流体装置的流动的模拟,几乎没有探索这些装置的最佳设计和原型,以确切控制这些装置的精确控制流动。在本文中,我们通过多孔介质实现多相流体流模型,用于模拟不可压缩的牛油液,例如水,尿或血清时。该配方包括在斯托克斯流动条件下的质量和动量守恒方程,并导致两个耦合的达西法律方程,用于润湿和非润湿相的压力和饱和相,进一步简化为Richard的润湿液饱和的方程,即然后使用有限元求解器来解决。通过计算润湿流体的时间依赖性饱和,该模型跟踪润湿流体前面。我们将其应用于二维纸网络中的液体运输研究,并验证了关于不同几何形状的纸张布局润湿动力学的实验数据。

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