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Semi-analytical model for boiling from enhanced structures

机译:增强结构沸腾的半解析模型

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Understanding of the fundamental mechanism of boiling from enhanced structures is currently incomplete. The main focus of the present study was to develop a semi-analytical model to predict the bubble departure diameter, frequency, and nucleation site density for a boiling enhancement structure. Existing models in literature were used as a framework to develop this. Salient feature of the model is the improvements on sub-models for bubble departure diameter, evaporation within the channels and convective heat transfer from the external surfaces of the enhanced structure. The model was used to calculate the total heat dissipated from the structures. Comparisons to experiments revealed that the bubble departure is predicted within +-10%, frequency within +-30% for all data points except a couple, nucleation site density within +-40% and the heat flux within +-50%. Sample calculations have been included to show its use in optimizing the geometrical parameters for maximizing heat transfer.
机译:目前尚不完全了解增强结构沸腾的基本机理。本研究的主要重点是开发一种半分析模型,以预测沸腾增强结构的气泡离开直径,频率和成核位点密度。文献中的现有模型被用作开发该模型的框架。该模型的显着特征是改进了子模型的气泡离开直径,通道内的蒸发以及增强结构外表面的对流传热。该模型用于计算结构的总散热量。与实验的比较表明,除一对以外,所有数据点的气泡偏离都预计在+ -10%内,频率在+ -30%内,成核点密度在+ -40%内,热通量在+ -50%内。包括了样本计算,以显示其在优化几何参数以最大化传热方面的用途。

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