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Forced-convection surface-boiling heat transfer and burnout in tubes of small diameters

机译:小直径管内强制对流表面沸腾传热和燃尽

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摘要

A basic heat-transfer apparatus was designed and constructed for the study of forced-convection boiling in small channels. The various regions of forced-convection surface boiling were studied experimentally and analytically. In the region of low wall superheat, the heat flux can be predicted by available correlations for forced convection. Data indicate, however, that these correlations do not properly account for the radial variation of properties for water at high temperature difference. The conventional Dittus and Boelter-McAdams relationship is recommended for design purposes on the basis of its simplicity and conservative predictions. An analysis for the prediction of the inception of first significant boiling was developed. Experimental results are in good agreement with analytical predictions. The analysis provides information necessary for the prediction of the complete forced-convection surface-boiling curve. Data for a small-diameter tube indicate that the bubbles formed at incipient boiling can trip the laminar or transition boundary layer to a fully-developed turbulent boundary layer. The region of vigorous boiling coincides approximately with the extrapolation of the pool-boiling curve in one set of experiments. In other experiments, pool-boiling data were strongly influenced by fluid and surface conditions, as well as by bubble-induced convection in the pool. Due to the complexities in these pool-boiling data, it is impossible to make a conclusive comparison with forced-convection-boiling data. The heat flux obtained by a superposition of pool boiling and forced convection is close to the apparent asymptote for fully-developed boiling. For design purposes, it is concluded that fully-developed -forced-convection boiling can be related to pool boiling by either direct extrapolation or superposition of forced convection.
机译:设计和构造了一种基本的传热装置,用于研究小通道中的强制对流沸腾。通过实验和分析研究了强制对流表面沸腾的各个区域。在低壁过热区域,可以通过强制对流的可用相关性预测热通量。但是,数据表明,这些相关性不能正确说明高温下水的特性的径向变化。基于简单和保守的预测,建议将传统的Dittus和Boelter-McAdams关系用于设计目的。开发了用于预测第一次显着沸腾的开始的分析。实验结果与分析预测非常吻合。该分析提供了预测完整的强制对流表面沸腾曲线所需的信息。小直径管的数据表明,初沸时形成的气泡可将层流或过渡边界层绊倒至完全展开的湍流边界层。在一组实验中,剧烈沸腾的区域与池沸腾曲线的外推近似重合。在其他实验中,池沸腾数据受流体和表面条件以及池中气泡引起的对流的强烈影响。由于这些池沸腾数据的复杂性,不可能与强制对流沸腾数据进行结论性比较。通过池沸腾和强制对流叠加而获得的热通量接近于充分发展的沸腾的表观渐近线。出于设计目的,可以得出结论,充分发展的强制对流沸腾可以通过直接外推或叠加强制对流来与池沸腾相关。

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