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A STUDY ON STIRRING CHARACTERISTICS IN A MICROCHANNEL WITH VARIOUS ARRANGEMENT OF BLOCKS

机译:具有各种布置的微通道中搅拌特性的研究

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In this study a newly designed microchannel is proposed. This design comprises periodically arranged simple blocks. In this configuration, the stirring is greatly enhanced at a certain parameter set. To characterize the flow field and the stirring effect both the numerical and experimental methods were employed. To obtain the velocity field, three-dimensional numerical computation to the Navier Stokes equations are performed by using a commercial code, FLUENT 6.0. The fluid-flow solutions are then cast into studying the characteristics of stirring with the aid of Lyapunov exponent. In this study the Lyapunov exponents are computed manually because the commercial code does not provide the corresponding option. In the experiment, flow visualization for the stirring effect is performed by using pure glycerin in one tank and glycerin mixed with a fluorescent dye in the other. The numerical results show that the particles' trajectories in the microchannel heavily depend on the block arrangement. It was shown that the stirring is significantly enhanced at larger block-height and it reaches maximum when the height is 0.8 times the channel width. We also studied the effect of the block stagger angle, and it turns out that the stirring performance is the best at the block angle 45 °.
机译:在这项研究中,提出了一种新设计的微通道。该设计包括定期排列的简单块。在这种配置中,在某个参数集中大大提高了搅拌。为了表征流场和搅拌效果,使用数值和实验方法。为了获得速度场,通过使用商业代码,流利的6.0来执行对Navier Stokes方程的三维数值计算。然后将流体流动溶液施用于借助Lyapunov指数的搅拌特性。在本研究中,Lyapunov指令是手动计算的,因为商业代码不提供相应的选项。在实验中,通过在一个罐中使用纯甘油和另一个储荧染料混合的甘油,通过在一个罐中使用纯甘油来进行搅拌效果的流动可视化。数值结果表明,微通道中的粒子的轨迹严重取决于块排列。结果表明,在较大的块高度下搅拌显着增强,并且当高度为通道宽度的0.8倍时,它达到最大值。我们还研究了块错位角的效果,事实证明,搅拌性能是块角度45°的最佳状态。

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