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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental investigation of thermally driven meniscus instability in capillary tubes
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Experimental investigation of thermally driven meniscus instability in capillary tubes

机译:毛细管中热驱动弯液面不稳定性的实验研究

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An experimental study of evaporating meniscus instability was performed for five capillary tube diameters ranging from 0.3 to 1.2 mm and three different volatile fluids (n-pentane, ethanol and acetone). By heating the tubes above the meniscus, the meniscus was observed to destabilize, unless the capillary tube suffered a mechanical failure due to the excess heat load. The onset of instability was recorded as a meniscus height measurement. The temperature difference across the meniscus, or superheat, at the onset of instability was calculated using the measured height and a previously validated mathematical model. Of the menisci destabilized, the superheat values varied non-linearly with capillary tube diameter. The smaller capillary tubes required higher superheats for instability. Comparison of the calculated superheats with previously developed stability criteria proved unsuccessful. An empirical relation was observed when the instability heights were scaled by the capillary geometry. Additional comparison was drawn between the capillary tubes and channels, and it was found that tubes require a larger superheat to destabilize as compared to a channel of comparable geometry.
机译:对直径在0.3到1.2 mm的五个毛细管和三种不同的挥发性流体(正戊烷,乙醇和丙酮)进行了蒸发弯液面不稳定性的实验研究。通过加热弯液面上方的管道,可以观察到弯液面不稳定,除非毛细管由于过度的热负荷而遭受机械故障。记录不稳定性的开始,作为弯月面高度测量值。使用测得的高度和先前验证的数学模型,可以计算出不稳定状态开始时弯月面或过热处的温差。在不稳定的弯液面中,过热值随毛细管直径呈非线性变化。较小的毛细管需要较高的过热度才能保持稳定性。所计算的过热度与先前制定的稳定性标准的比较被证明是不成功的。当不稳定性高度通过毛细管几何尺寸进行缩放时,观察到经验关系。在毛细管和通道之间进行了进一步的比较,发现与几何形状相当的通道相比,毛细管需要更大的过热来破坏稳定性。

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