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NUCLEATE BOILING HEAT TRANSFER: POSSIBILITIES AND LIMITATIONS OF THEORETICAL ANALYSIS

机译:核心沸腾的传热:理论分析的可能性和局限性

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The paper considers the different ways of nucleate boiling investigation, and in particular, presents the analysis of the latest numerical studies of the nucleate boiling primary processes (isolated bubble growth, thin liquid film flow and evaporation near the nucleation site). Many features of the process that were only the hypothesis became the established facts after the direct numerical simulation. However, in spite of their undoubted usefulness these investigations can not be applied for practical calculations. High complexity of the phenomena comprising nucleate boiling excludes practically a possibility of strict theoretical analysis of the process. Under this situation development of an approximate theory of nucleate boiling retains its validity at present. Such a theory has been developed by the author in 1988. It reveals the main regularities of the nucleate boiling and leads to the predicting equation for heat transfer, which includes two empirical numerical factors. On the basis of the model developed the method of calculation of heat transfer in boiling of binary mixtures is proposed. To improve the existing predicting equations for boiling heat transfer it seems to be especially important to ground theoretically the nucleation sites density dependence on the wall superheat and liquid properties.
机译:本文考虑了核心沸腾调查的不同方式,特别是对核心沸腾初级方法的最新数值研究(分离的泡沫生长,薄液膜流动和核心蒸发蒸发)进行分析。这个过程的许多特征只有假设在直接数值模拟后成为了既定的事实。但是,尽管他们无疑是有用性,但这些调查不能申请实际计算。包括核心沸腾的现象的高复杂性,几乎不包括严格对该过程的理论分析的可能性。在这种情况下,核心沸腾理论的发展保持了目前的有效性。这一理论已经由1988年由作者开发。它揭示了核心沸腾的主要规律,并导致预测传热的方程,包括两个经验数值因素。在该模型的基础上,提出了一种基于二元混合物沸腾中的传热计算方法。为了改善用于沸腾热传递的现有预测方程,理论上似乎对壁过热和液体性质的核心密度依赖性尤为重要。

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