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Heat Transfer Efficiency of Turbulent Film Boiling on a Horizontal Elliptical Tube with External Flowing Liquid

机译:外部流动液体在水平椭圆管上沸腾湍流膜沸腾的传热效率

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Film boiling on a horizontal elliptical tube immersed in external flowing nitrogen liquid is investigated in the present paper. The isothermal wall temperature is high enough to induce turbulent film boiling, and then a continuous vapor film runs upward over the surface. The high velocity of the flowing saturated liquid at the boundary layer is determined by potential flow theory. In addition, the present paper addresses a new model to predict the vapor-liquid interfacial shear on an elliptical tube under forced convection turbulent film boiling. In the results, film thickness and Nusselt number can be obtained under different eccentricity and Froude number. And a comparison between the results of the present study and those reported in previous experimental studies is provided. The results show that there is a good agreement between the present paper and the experimental data.
机译:本文研究了在水平椭圆管中浸没在外部流动氮液中的薄膜沸腾现象。等温壁温度高到足以引起湍流膜沸腾,然后连续的蒸汽膜在表面上向上流动。边界层处流动的饱和液体的高速由势流理论确定。此外,本文提出了一种新的模型,以预测在强迫对流湍流膜沸腾下椭圆管上的气液界面剪切。结果,可以在不同的偏心率和弗洛德数下获得膜厚度和努塞尔数。并提供了本研究结果与先前实验研究中报道的结果之间的比较。结果表明,本文与实验数据吻合良好。

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