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Flow Visualization in Artificial Porous Media from Microfluidic PMMA Devices

机译:来自微流体PMMA装置的人工多孔介质中的流动可视化

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Microfluidic polymethylmethacrylate (PMMA) devices for study of particle transport in artificial porous media were designed and microfabricated using hot embossing with a brass mold insert containing a microchannel network with eight layers. After thermal bonding to enclose the microchannel network, a process protocol was applied to successfully remove bubbles in the PMMA device. Characterization protocols were developed for study of fluorescent particle tracking, accumulation, and retention in these microfluidic chip artificial porous media. Particle accumulation and retention was observed throughout the microfluidic network domain and predominantly at the inlet section of the PMMA device due to entrance effects. Particle Image Velocimetry of the PMMA device allowed for generating velocity profiles in the chip microchannel networks.
机译:设计并研究了用于人工多孔介质中颗粒传输的微流体聚甲基丙烯酸甲酯(PMMA)装置,并通过热压印和黄铜模具插件(包含8层微通道网络)进行了微加工。在热键合以封闭微通道网络后,应用了处理协议以成功去除PMMA装置中的气泡。开发了表征方案,用于研究荧光颗粒在这些微流控芯片人工多孔介质中的跟踪,积累和保留。由于进入效应,在整个微流体网络域中以及主要在PMMA装置的入口部分观察到了颗粒的积累和保留。 PMMA设备的粒子图像测速允许在芯片微通道网络中生成速度分布图。

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