论文标题
关于结构力对鳍角落附近冷凝膜轮廓的影响
On the effect of structural forces on a condensing film profile near a fin-groove corner
论文作者
论文摘要
用凹槽的灯芯结构估算两相的被动热传播器的冷凝器性能对于预测热量散布器的整体性能至关重要。尽管已经广泛研究了微型山脉中的蒸发问题,但重点介绍了关于鳍槽系统的凝结的研究。 Fin-Grove系统上的凝结实际上是一个多尺度问题。鳍槽角附近的膜的厚度可以减小到纳米级尺寸,这需要将纳米级效应纳入建模。虽然先前的一些研究调查了分散力的作用,但在薄膜凝结建模对鳍槽系统中的结构力的影响从未考虑过。本研究利用了一个考虑色散和结构力的不融合压力模型。结果表明,结构力能够在某些构型中主导分散力。因此,通过加强压力的压力,结构力会导致与工程应用相关的子冷却值的薄膜轮廓突然变化(斜率断裂)。
Estimation of condenser performance of two-phase passive heat spreaders with grooved wick structures is crucial in the prediction of the overall performance of the heat spreader. Whilst the evaporation problem in micro-grooves has been widely studied, studies focusing on the condensation on fin-groove systems have been scarce. Condensation on fin-groove systems is actually a multi-scale problem. Thickness of the film near the fin-groove corner can decrease to nanoscale dimensions, which requires the inclusion of nanoscale effects into the modeling. While a few previous studies investigated the effect of dispersion forces, the effect of structural forces has never been considered in the thin film condensation modeling on fin-groove systems. The present study utilizes a disjoining pressure model which considers both dispersion and structural forces. The results reveal that structural forces are able to dominate dispersion forces in certain configurations. Consequently, by intensifying the disjoining pressure, structural forces lead to a sudden change of the film profile (slope break) for subcooling values which are relevant to engineering applications.