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    鋸齒結構對慣性微流聚焦的影響研究

    Study on Effect of Zigzag Channel Structure on Inertial Microfluidic Focusing

    • 摘要: 慣性微流控芯片已廣泛應用於粒子或細胞的聚焦、捕獲、分選等領域。在眾多彎曲通道中,鋸齒形通道由於可以減少粒子平衡位置的個數且易於集成,是一種十分有前景的粒子操縱結構。利用數值模擬研究鋸齒結構參數對粒子慣性聚焦的影響發現🖱:鋸齒角度減小導致強烈的二次流流動,能夠產生更優的聚集性能,但必須綜合壓降影響🏌🏼‍♂️;高寬比(H/W)影響聚焦模式,高寬比<1使得聚焦發生在寬度方向,高寬比~0.5更易產生單聚焦模式。結果對微流控芯片中鋸齒形通道結構的選擇和優化具有指導意義。

       

      Abstract: Inertial microfluidic chips have been widely used in the fields of particle or cell focusing, capturing and sorting. Among many curved channels, zigzag channel can reduce the number of particle equilibrium positions and was easy to integrate, which was a very promising particle manipulation structure. Numerical simulations were conducted to study the effect of sawtooth structure parameters on particle inertial focusing. The smaller the sawtooth angle was, the stronger the secondary flow will be, and the better focusing performance will be achieved, but the pressure drop should be integrated. The ratio of height to width (H/W) affects focusing mode: in the channel of H/W<1, particles are focused in the width direction; in the channel of H/W~0.5 particle focusing tends to single focusing mode. The results were of guiding significance for the selection and optimization of zigzag channel structure in microfluidic chips.

       

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