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首页> 外文期刊>Journal of Micromechanics and Microengineering >Entropy generation of droplet motion with surface tension hysteresis in a closed microchannel
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Entropy generation of droplet motion with surface tension hysteresis in a closed microchannel

机译:封闭微通道中具有表面张力滞后的液滴运动的熵产生

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A transient heat transfer and entropy analysis is conducted to investigate the processes of thermocapillary droplet motion in closed microchannels. Both theoretical predictions and experimental data are presented for time-dependent temperature changes during the droplet acceleration. This paper develops a predictive model of the entropy production due to thermal and fluid irreversibilities in the microchannel. Thermocapillary, pressure and friction forces are modelled within the droplet, as well as surface tension hysteresis during start-up of the droplet motion. The spatial temperature change in the axial direction is measured experimentally, as well as the displacement of the droplet over time. The variation of the entropy generation number is reported for open and closed channels. Close agreement is obtained between the predicted and experimental data. The results show that water droplets have lower thermal and fluid irreversibilities than toluene and mineral oil.
机译:进行了瞬态传热和熵分析,以研究封闭微通道中热毛细管液滴运动的过程。给出了液滴加速过程中随时间变化的温度变化的理论预测和实验数据。本文开发了由于微通道中的热和流体不可逆性而产生的熵的预测模型。在液滴运动开始期间,对液滴内的热毛细作用力,压力和摩擦力以及表面张力滞后进行建模。轴向测量空间温度的变化以及液滴随时间的位移。报告了开放通道和封闭通道的熵生成数的变化。在预测数据和实验数据之间获得了紧密的一致性。结果表明,水滴具有比甲苯和矿物油更低的热和流体不可逆性。

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