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A brief review on convection heat transfer of fluids at supercritical pressures in tubes and the recent progress

机译:管内超临界压力下流体的对流传热及最新进展简述

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摘要

This study presents a state-of-the-art overview on heat transfer characteristics of fluids (mainly water, carbon dioxide and hydrocarbon fuels) flowing in smooth tubes and enhanced tubes at supercritical pressures and tries to obtain a fundamental understanding of the unique characteristics. Heat transfer in enhanced tubes is much better than that in smooth tubes with a larger pressure drop penalty at supercritical conditions. Thermo-physical properties of fluids at supercritical pressures and relevant parametric effects (e.g., effects of mass flux, heat flux, pressure and flow direction) on heat transfer performance are outlined. Inconsistencies in the literature on heat transfer are emphasized and evaluated. Possible reasons are suggested to explain those inconsistencies. Moreover, the mechanisms for heat transfer deterioration at supercritical pressures are discussed and different correlations for predicting heat transfer deterioration are compared and assessed with experimental data. These predictive correlations based on one working fluid cannot be applied directly to other working fluids. Besides, several common buoyancy criteria proposed in the literature to distinguish forced convection and mixed convection are evaluated and show large discrepancies with experimental data. There is no buoyancy criterion developed for hydrocarbon fuels. Future research needs are warranted for heat transfer of near-critical and supercritical fluids. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究提供了有关在超临界压力下在光滑管和增强管中流动的流体(主要是水,二氧化碳和碳氢燃料)的传热特性的最新概述,并试图从根本上理解其独特特性。在超临界条件下,增强管中的传热要好于具有较大压降损失的光滑管中的传热。概述了流体在超临界压力下的热物理性质以及相关的参数效应(例如,质量通量,热通量,压力和流动方向的影响)。强调和评估了传热文献中的矛盾之处。建议用可能的原因来解释这些不一致之处。此外,讨论了在超临界压力下传热劣化的机理,并比较了预测传热劣化的不同相关性,并与实验数据进行了评估。基于一种工作流体的这些预测相关性不能直接应用于其他工作流体。此外,对文献中提出的区分强制对流和混合对流的几种常见浮力标准进行了评估,并显示出与实验数据的较大差异。没有针对碳氢化合物燃料开发的浮力标准。对于近临界和超临界流体的传热,未来的研究需求是必要的。 (C)2015 Elsevier Ltd.保留所有权利。

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