雷登弗罗斯特效应
磁流体
下降(电信)
材料科学
过热
磁场
沸腾
纳米流体
机械
蒸发
传热
悬浮
液滴
沸点
热力学
磁铁
复合材料
物理
传热系数
核沸腾
机械工程
工程类
量子力学
作者
Boris Kichatov,Alexey Korshunov,Vladimir Sudakov,Alexandr Golubkov
标识
DOI:10.1016/j.jmmm.2023.171410
摘要
When a droplet evaporates in the Leidenfrost mode, the intensity of heat transfer is significantly reduced compared to the boiling mode, which is highly undesirable for a number of applications. Here we demonstrate a method for intensifying heat transfer during droplet evaporation in the Leidenfrost mode. The essence of this method is that if a magnetic nanofluid is used as a cooling liquid, then with the help of an inhomogeneous magnetic field it is possible to forcibly press a levitating drop to a superheated surface, which contributes to the intensification of the drop evaporation. An aqueous suspension of Fe3O4 is used here as a ferrofluid. The experimental results show that this method can reduce the drop evaporation time by several times. When the magnetic field gradient increases, the drop evaporation time decreases according to the power law. A simple phenomenological model is proposed to substantiate the observed effects.
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