Quasi-3D modeling and efficient simulation of laminar flows in microfluidic devices

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Abstract

A quasi-3D model has been developed to simulate the flow in planar microfluidic systems with low Reynolds numbers. The model was developed by decomposing the flow profile along the height of a microfluidic system into a Fourier series. It was validated against the analytical solution for flow in a straight rectangular channel and the full 3D numerical COMSOL Navier-Stokes solver for flow in a T-channel. Comparable accuracy to the full 3D numerical solution was achieved by using only three Fourier terms with a significant decrease in computation time. The quasi-3D model was used to model flows in a micro-flow cytometer chip on a desktop computer and good agreement between the simulation and the experimental results was found.

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Islam, M. Z., & Tsui, Y. Y. (2016). Quasi-3D modeling and efficient simulation of laminar flows in microfluidic devices. Sensors (Switzerland), 16(10). https://doi.org/10.3390/s16101639

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