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PRELIMINARY INVESTIGATION OF BOILING AND TRANSPIRATION OF WATER IN A POROUS MEDIA COOLED WITH AN AIR FLOW

机译:多孔气流介质中水沸腾和蒸发的初步研究

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This paper describes a study focused on heat and mass transfer through various porous media involving both boiling and transpiration. Heat was supplied to a porous structure immersed in water. Water was boiled at the base of the porous material and in some cases advected from the porous structure by air blown over its surface. The porous media was expected to provide higher heat fluxes than those attained during pool boiling by providing additional surface area and by increasing the number of nucleation sites. The behavior was studied from just below the boiling point and into the nucleate boiling regime. The experimental apparatus consisted of a 2.5 cm square jet impinging onto a 2.5 cm square porous sample. A total of four copper foam samples and one carbon graphite foam sample were tested. The foam sample was placed in contact with a 2.5 cm square heated surface. Water was supplied through the sides of the porous sample and was able to leave the system as a vapor through the top surface of the sample, where it was advected away. It was determined that the presence of an impinging jet had no noticeable effect on heat flux. Up to 60% enhancement in heat flux was observed, compared to boiling of the plain surface. Contact resistance was significant and mitigated the affects of sample thermal conductivity.
机译:本文介绍了一项研究,其重点是通过各种涉及沸腾和蒸腾作用的多孔介质的传热和传质。将热量提供给浸入水中的多孔结构。水在多孔材料的底部沸腾,并且在某些情况下,通过在其表面吹气将其从多孔结构中排出。通过提供额外的表面积并增加成核位点的数量,多孔介质有望提供比池沸腾过程中更高的热通量。从刚好低于沸点到成核沸腾状态研究了该行为。实验装置由一个2.5平方厘米的射流撞击到2.5平方厘米的多孔样品上组成。总共测试了四个泡沫铜样品和一个碳石墨泡沫样品。使泡沫样品与2.5cm见方的加热表面接触。水通过多孔样品的侧面供应,并能够以蒸气的形式通过样品的顶面离开系统,并被排出。已确定撞击射流的存在对热通量没有明显影响。与普通表面的沸腾相比,观察到热通量提高了60%。接触电阻显着,并减轻了样品导热性的影响。

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