首页> 外文会议>2015 Proceedings of the ASME 13th international conference on nanochannels, microchannels, and minichannels >COMPUTATIONAL AND EXPERIMENTAL STUDY OF GAS BUBBLES REMOVAL IN A MICROFLUIDIC SYSTEM
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COMPUTATIONAL AND EXPERIMENTAL STUDY OF GAS BUBBLES REMOVAL IN A MICROFLUIDIC SYSTEM

机译:微流体系统中气体气泡去除的计算和实验研究

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Formation of unwanted bubbles is one the main issues in biomicrofluidics-based applications such as lab-on-a-chip devices, and adversely affects the performance of these systems. In this work we report a simple and efficient method for removing gas bubbles from liquid filled microchannels. This bubble removal system consists of a cavity on which a hydrophobic membrane is bonded parallel to the main fluidic channel to vent gas bubbles normal to the flow direction. A T-junction configuration is used to generate gas bubbles prior to entering the bubble removal cavity. A finite volume-based computational model is developed using ANSYS FLUENT to simulate gas removal characteristics of the system. The effects of various geometric parameters and operating conditions are studied both through numerical simulations and experimentally.
机译:有害气泡的形成是基于生物微流体的应用(如芯片实验室设备)中的主要问题之一,并且对这些系统的性能产生不利影响。在这项工作中,我们报告了一种从液体填充的微通道中去除气泡的简单有效的方法。该气泡去除系统由一个空腔组成,疏水膜平行于主流体通道结合在该空腔上,以排出垂直于流动方向的气泡。 T型结构造用于在进入气泡去除腔之前产生气泡。使用ANSYS FLUENT开发了基于体积的有限计算模型,以模拟系统的除气特性。通过数值模拟和实验研究了各种几何参数和操作条件的影响。

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