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Numerical simulation of a microfabricated gas preconcentrator for environmental monitoring.

机译:用于环境监测的微型气体预浓缩器的数值模拟。

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A numerical simulation of the separation of gaseous species through a microfluidic gas preconcentrator has been performed. The gas preconcentrator is a curved converging/diverging nozzle that operates like a gas centrifuge. The preconcentrator is being developed to enhance the sensitivity of microscale gas sampling devices for fast response, on-site environmental monitoring. The numerical model solves the Euler equations and the Maxwell-Stefan diffusion equation to provide an exit mass flux profile for a particular set of inlet conditions. From this profile, the efficiency of the preconcentrator is determined by computing the separation factor, which measures the ability of the device to separate the gas flow into two streams that are depleted and enriched in the heavy gas molecule. The results of the simulations are compared to experimental measurements of the separator's performance and provide insight into the underlying physics of the operation of the preconcentrator.
机译:通过微流态气体预浓缩器分离气态物质的数值模拟已经完成。气体预浓缩器是弯曲的收缩/扩散喷嘴,其作用类似于气体离心机。正在开发预浓缩器,以提高用于快速响应,现场环境监测的微型气体采样设备的灵敏度。数值模型求解了Euler方程和Maxwell-Stefan扩散方程,以提供特定入口条件集的出口质量通量曲线。根据该曲线,可通过计算分离因子来确定预浓缩器的效率,该分离因子可测量设备将气流分离为贫气中富集的两股气流的能力。将模拟结果与分离器性能的实验测量值进行比较,从而可以深入了解预选器运行的基本物理原理。

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