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Quantitative modeling of the behaviour of microfluidic autoregulatory devices

机译:微流体自动调节装置行为的定量建模

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摘要

We develop a theoretical model for a fluidic current source consisting of a via, a detour channel, and a push-up type micro-valve. The model accurately describes the non-linear behaviour of this type of device, which has been previously measured experimentally. We show how various structural parameters and material properties of the device influence the saturated flow rate and the minimum driving pressure required for the device to function as a current source. Conversely, the model can be used to design a fluidic current source with a desired saturated flow rate and low operational pressure. The present model can be straightforwardly applied to microfluidic circuits composed of many functional autoregulatory devices.
机译:我们开发了一种流体电流源的理论模型,该流体源包括一个通孔,一个tour回通道和一个上推式微型阀。该模型准确地描述了此类设备的非线性行为,该行为先前已通过实验进行了测量。我们展示了设备的各种结构参数和材料特性如何影响饱和流量和设备用作电流源所需的最小驱动压力。相反,该模型可用于设计具有期望的饱和流速和低工作压力的流体电流源。本模型可以直接应用于由许多功能性自动调节装置组成的微流体回路。

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