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Effects of surface roughness on the flow characteristics in PDMS microchannels

机译:表面粗糙度对PDMS微通道流动特性的影响

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Fundamental understanding of liquid flow through microchannels is important to the design and optimization of microfluidic devices. The objective of the current study is to experimentally investigate the effects of surface roughness on the flow characteristics in rectangular PDMS microchannel with a hydraulic diameter ranging from 66.67 to 200 /spl mu/m. The experimental results are compared with the predictions from the conventional laminar flow theory. A significant difference between the experimental data and the theoretical predictions is found. Experimental results indicate that the pressure gradient and flow friction in microchannels are higher than those from the conventional laminar flow theory. This may be attributed to the fact that there exists the effect of surface roughness of the microchannels. The present results with a surface roughness model are compared with the experimental results to examine the validity of the model. It is found that there is a good agreement between the experimental data and the numerical predictions with a surface roughness model.
机译:通过微通道对液体流动的基本理解对于微流体装置的设计和优化是重要的。目前的研究的目的是通过66.67至200 / SPL MU / M的液压直径进行实验地研究表面粗糙度对矩形PDMS微通道中流动特性的影响。将实验结果与传统的层流理论的预测进行了比较。发现实验数据与理论预测之间的显着差异。实验结果表明,微通道的压力梯度和流动摩擦高于传统层流动理论的压力梯度和流动摩擦。这可能归因于存在微通道表面粗糙度的影响。将具有表面粗糙度模型的本结果与实验结果进行比较,以检查模型的有效性。发现实验数据与表面粗糙度模型的数值预测之间存在良好的一致性。

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