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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Capillary Imbibition into Converging Tubes: Beating Washburn's Law and the Optimal Imbibition of Liquids
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Capillary Imbibition into Converging Tubes: Beating Washburn's Law and the Optimal Imbibition of Liquids

机译:毛细管汇入会聚管:击败沃什伯恩定律和液体的最佳吸收

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摘要

We consider the problem of capillary imbibition into an axisymmetric tube for which the tube radius decreases in the direction of increasing imbibition. For tubes with constant radius, imbibition is described by Washburn's law (referred to here as the BCLW law to recognize the contributions of Bell, Cameron, and Lucas that predate Washburn). We show that imbibition into tubes with a powerlaw relationship between the radius and axial position generally occurs more quickly than imbibition into a constantradius tube. By a suitable choice of the shape exponent, it is possible to decrease the time taken for the liquid to imbibe from one position to another by a factor of 2 compared to the BCLW law. We then show that a further small decrease in the imbibition time may be obtained by using a tube consisting of a cylinder joined to a cone of 3 times the cylinder length. For a given inlet radius, this composite shape attains the minimum imbibition time possible. We confirm our theoretical results with experiments on the tips of micropipettes and discuss the possible significance of these results for the control of liquid motion in microfluidic devices.
机译:我们考虑了毛细吸收到轴对称管中的问题,该管的半径在吸收增加的方向上减小了。对于具有恒定半径的管,吸取是由Washburn定律描述的(此处称为BCLW定律是为了承认Bell,Cameron和Lucas早于Washburn的贡献)。我们表明,与半径恒定的管相比,吸入半径和轴向位置之间具有幂律关系的管通常会更快。通过形状指数的合适选择,可以通过相比于BCLW法的2倍以减少从一个位置用于将液体带到吸收水分到另一个的时间。然后,我们表明,通过使用由连接到圆柱体长度3倍的圆锥体的圆柱体组成的管,可以进一步缩短吸收时间。对于给定的入口半径,该复合形状获得了可能的最小吸收时间。我们用微量移液器的吸头实验证实了我们的理论结果,并讨论了这些结果对于控制微流体装置中液体运动的可能意义。

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