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首页> 外文期刊>International Journal of Heat and Mass Transfer >Dynamic Leidenfrost temperature of saturated water drops on textured surfaces
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Dynamic Leidenfrost temperature of saturated water drops on textured surfaces

机译:织构表面上饱和水滴的动态莱顿弗罗斯特温度

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摘要

In this study, we propose an analytical model to predict dynamic Leidenfrost temperature for saturated water drops impacting on superheated smooth and textured surfaces. To define the Leidenfrost triggering mechanism, this model postulates a balance relation between the downward pressure by the drop itself and the resistant pressure arising from vaporization from the base of the drop; the former is expressed as the sum of dynamic and water hammer pressures induced by the drop motion while the latter is modeled with pressure buildup effect due to vapor flow within the thin film under the drop. The textured surfaces have uniformly distributed circular pillars with -10 um length scale, and the center-to-center pitch of the pillars varies from 15 to 120 um. The experimental results show that the Leidenfrost temperature on textured surfaces increases at the same Weber number (We), as the pillar pitch becomes coarser. However, the Leidenfrost temperatures on the textured surfaces with relatively fine pitch were found to be rather lower than that on the smooth surface at the same We. Those experimental data are well predicted by the theoretical model, in which two simple equations with two unknowns (Leidenfrost temperature and thickness of thin vapor layer) are derived; one is based on the pressure balance relation and the other postulates an initial transient phase during drop impact.
机译:在这项研究中,我们提出了一个分析模型来预测饱和水滴在过热的光滑和纹理表面上的动态莱顿弗罗斯特温度。为了定义莱顿弗罗斯特的触发机制,该模型假定了液滴本身的向下压力与液滴底部蒸发产生的阻力之间的平衡关系。前者表示为液滴运动引起的动态和水锤压力之和,而后者则是由于液滴下薄膜内的蒸汽流动而产生压力累积效应的模型。带纹理的表面具有长度为-10 um的均匀分布的圆形柱,并且柱的中心距为15到120 um。实验结果表明,随着支柱间距变粗,纹理表面上的莱顿弗罗斯特温度以相同的韦伯数(We)升高。然而,在相同的We下,发现具有相对较细间距的纹理表面上的莱顿弗罗斯特温度要比光滑表面上的温度低得多。理论模型很好地预测了这些实验数据,得出了两个简单的方程式,其中有两个未知数(莱恩弗斯特温度和薄薄的蒸汽层厚度)。一个基于压力平衡关系,另一个基于跌落冲击期间的初始过渡阶段。

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