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Design of a flow controlled asymmetric droplet splitter using computational fluid dynamics

机译:基于计算流体动力学的流量控制非对称液滴分离器设计

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摘要

In this work the design of a segmented flow microfluidic device is presented that allows droplet splitting ratios from 1:1 up to 20:1. This ratio can be dynamically changed on chip by altering an additional oil flow. The design was fabricated in PDMS chips using the standard SU-8 mold technique and does not require any valves, membranes, optics or electronics. To avoid a trial and error approach, fabricating and testing several designs, a computational fluid dynamics (CFD) model was developed and validated for droplet formation and splitting. The model was used to choose between several variations of the splitting T-junction with the extra oil inlet, as well to predict the additional flow rate needed to split the droplets in various ratios. Experimental and simulated results were in line, suggesting the model’s suitability to optimize future designs and concepts. The resulting asymmetric droplet splitter design opens possibilities for controlled sampling and improved magnetic separation in bio-assay applications.
机译:在这项工作中,提出了分段流动微流体装置的设计,该装置允许液滴的比例从1:1到20:1。该比率可以通过更改额外的油流量在芯片上动态更改。该设计使用标准SU-8模具技术以PDMS芯片制造,不需要任何阀门,薄膜,光学器件或电子器件。为了避免反复试验,制造和测试多种设计,开发了计算流体动力学(CFD)模型并验证了液滴的形成和分裂。该模型用于在带有额外进油口的分裂T型接头的几种变化之间进行选择,并预测以各种比例分裂液滴所需的额外流速。实验和模拟结果相吻合,表明该模型适用于优化未来的设计和概念。最终的非对称液滴分离器设计为生物测定应用中的受控采样和改进的磁分离开辟了可能性。

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