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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Thermocapillary Effect of a Liquid Plug in Transient Temperature Fields
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Thermocapillary Effect of a Liquid Plug in Transient Temperature Fields

机译:液体塞在瞬态温度场中的热毛细管效应

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In this paper we present the theoretical and experimental results of thermocapillary effects of liquid plugs in a long capillary, which is exposed to a transient temperature gradient. A one-dimensional analytical model is formulated for the dynamic behavior of a liquid droplet, which is driven by the thermocapillary effect under a transient temperature field. The thermocapillary actuation concept can be used for liquid transport in microfluidics. In microfluidic applications, the temperature field is often induced by the activation of integrated heaters. The generated temperature field and temperature gradient drive a liquid droplet according to the temperature-dependent surface tension. In the initial stage, the transient temperature gradient spreads in the capillary wall much slower than the droplet itself, and thus leads to an interesting behavior of droplet motion as described in this paper. Experiments were carried out for liquid droplets with different viscosities in long glass capillaries with different radii. The capillaries are exposed to a resistive heater at one of its ends. The analytically predicted behavior of the droplet motion agrees qualitatively well with the measurement.
机译:在本文中,我们介绍了在长毛细管中暴露于瞬态温度梯度的液体塞的热毛细管效应的理论和实验结果。为瞬态温度场下的热毛细作用驱动的液滴的动态行为建立了一维分析模型。热毛细管致动概念可用于微流体中的液体输送。在微流体应用中,温度场通常是由集成加热器的激活引起的。产生的温度场和温度梯度根据温度相关的表面张力驱动液滴。在初始阶段,瞬态温度梯度在毛细管壁中的扩散要比液滴本身慢得多,因此导致了液滴运动的有趣行为,如本文所述。在具有不同半径的长玻璃毛细管中对不同粘度的液滴进行了实验。毛细管的一端暴露于电阻加热器中。液滴运动的分析预测行为在质量上与测量结果吻合良好。

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