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Analytical considerations of flow boiling heat transfer in metal-foam filled tubes

机译:金属泡沫填充管内流动沸腾传热的分析考虑

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摘要

Flow boiling in metal-foam filled tube was analytically investigated based on a modified microstructure model, an original boiling heat transfer model and fin analysis for metal foams. Microstructure model of metal foams was established, by which fiber diameter and surface area density were precisely predicted. The heat transfer model for flow boiling in metal foams was based on annular pattern, in which two phase fluid was composed by vapor region in the center of the tube and liquid region near the wall. However, it was assumed that nucleate boiling performed only in the liquid region. Fin analysis and heat transfer network for metal foams were integrated to obtain the convective heat transfer coefficient at interface. The analytical solution was verified by its good agreement with experimental data. The parametric study on heat transfer coefficient and boiling mechanism was also carried out.
机译:基于改进的微观结构模型,原始的沸腾传热模型和金属泡沫的翅片分析,对金属泡沫填充管中的流动沸腾进行了分析研究。建立了金属泡沫的微观结构模型,通过该模型可以精确地预测纤维直径和表面积密度。金属泡沫中沸腾的传热模型基于环形模式,其中两相流体由管中心的蒸汽区域和壁附近的液体区域组成。然而,假定成核沸腾仅在液体区域中进行。结合了金属泡沫的鳍片分析和传热网络,获得了界面对流换热系数。通过与实验数据的良好吻合验证了该解析解决方案。还对传热系数和沸腾机理进行了参数研究。

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