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A simplified energy dissipation based model of heat transfer for post-dryout flow boiling

机译:基于简化的基于能量耗散的干后流动沸腾传热模型

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摘要

A model for post dryout mist flow heat transfer is presented based on considerations of energy dissipation in the flow. The model is an extension of authors own model developed earlier for saturated and sub cooled flow boiling. In the former version of the model the heat transfer coefficient for the liquid single-phase convection as a reference was used, due to the lack of the appropriate model for heat transfer coefficient for the mist flow boiling. That issue was a fundamental weakness of the former approach. The purpose of present investigation is to fulfil this drawback. Now the reference heat transfer coefficient for the saturated flow boiling is that corresponding to vapour flow the end of the mist flow. The wall heat flux is based on partitioning and constitutes of two principal components, namely the convective heat flux for vapour flowing close to the wall and two phase flow droplet-vapour in the core flowing. Both terms are accordingly modelled. The results of calculations have been compared with some experimental correlations from literature showing a good consistency. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于流中能量耗散的考虑,提出了一种变干后雾流传热的模型。该模型是作者先前为饱和和过冷流动沸腾开发的模型的扩展。在该模型的旧版本中,由于缺少用于雾流沸腾的传热系数的适当模型,因此以液体单相对流的传热系数为参考。该问题是前一种方法的根本缺陷。当前研究的目的是解决该缺点。现在,饱和流沸腾的参考传热系数是与雾流末端的蒸气流相对应的传热系数。壁的热通量是基于分配的,并且由两个主要成分组成,即,蒸气在壁附近流动的对流热通量和岩心中流动的两相液滴-蒸气。因此对两个术语进行了建模。计算结果已与文献中的一些实验相关性进行了比较,显示出良好的一致性。 (C)2018 Elsevier Ltd.保留所有权利。

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