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- W1982243434 abstract "This paper presents fluid-structure interaction (FSI) simulation of a microfluidic diode, which features a thin flexible flap and a rigid stopper embedded closely inside a microchannel. The thin flap deforms under different applied pressure, leading to a small flow resistance for forward flow and a large flow resistance for reverse flow. Three-dimensional simulations of structure deflection and CFD were interactively carried out to calculate the flap deformation and flow filed using ANSYS® Multi-field™ solver. In the simulations nonlinear hyperelastic material property was used for the thin flap, and the pressure drop across device inlet and outlet was applied in small increments to solve the nonlinear continuum mechanics problems. The simulated flap deflections under both forward and reverse flow show nonlinear relation between deflection and pressure, consistent with experimental data. The simulated flow rates under various pressures also agree well with the measurement results, within 15% error for forward flow and 17% for reverse flow. The simulations can be used as guidelines for optimal design of the microfluidic diode." @default.
- W1982243434 created "2016-06-24" @default.
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- W1982243434 date "2006-01-01" @default.
- W1982243434 modified "2023-09-23" @default.
- W1982243434 title "Three-Dimensional FEM Simulation of a Microfluidic Diode Considering Coupled Fluid-Structure Interaction" @default.
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- W1982243434 doi "https://doi.org/10.1115/imece2006-15803" @default.
- W1982243434 hasPublicationYear "2006" @default.
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