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Optimization of Patterned Grooves Micromixer Using the Design of Experiments

机译:使用实验设计优化图案化沟槽微混合器

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Mixing independent fluid is of significantly important in microfluidics application, however, is difficult to mix solutions in microchannels. Efficient mixing was also hampered by comparatively slow molecular diffusion process at the micro-scale. In this study, in order to enhance the mixing efficiency, the configuration of patterned grooves micromixer is optimized using an approximate optimization technique. First of all, mixing characteristics analyzed by 3-D Computational Fluid Dynamics. The effective of geometrical parameters on the mixing performance of the staggered herringbone mixer with patterned grooves on the floor are numerical investigated. Groove parameters choose the most effective parameters such as the patterned groove of depth, the patterned groove of length, between grooves distance, and the patterned groove of angle. Design of experiments is applied to the optimization procedure. The optimum micromixer models in parameters region performed to generate using Design of experiments in effective parameters. a mixing index and a pressure drop values calculated at the cross-sections compared each models and proposed optimization of models.
机译:在微流控应用中,混合独立的流体非常重要,但是,很难在微通道中混合溶液。在微观尺度上,相对较慢的分子扩散过程也阻碍了有效的混合。在这项研究中,为了提高混合效率,使用近似优化技术对图案化凹槽微混合器的配置进行了优化。首先,通过3-D计算流体动力学分析混合特性。数值研究了几何参数对地板上有花纹槽的交错人字形混合器混合性能的影响。凹槽参数选择最有效的参数,例如深度的图案化凹槽,长度的图案化凹槽,凹槽之间的距离以及角度的图案化凹槽。实验设计被应用于优化程序。使用有效参数的实验设计来生成参数区域中的最佳微混合器模型。在横截面上计算出的混合指数和压降值将每个模型进行了比较,并提出了模型的优化建议。

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