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首页> 外文期刊>Journal of nuclear engineering and radiation science >Heat Transfer in Supercritical Fluids: A Review
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Heat Transfer in Supercritical Fluids: A Review

机译:超临界流体的热传递:综述

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摘要

Supercritical fluids (SCF) find potential applications in the upcoming energy systems due to various advantages associated with them. One of such applications is nuclear reactor where supercritical water and carbon-dioxide, both are proposed as the coolants in advanced reactor designs. Higher efficiency, simplified systems, lower operational costs are some of the advantages which propels the research fraternity to employ these fluids in application. However, there are also some challenges associated with the use of these fluids. Heat transfer behavior of these fluids is one among them. As SCF undergo tremendous changes in thermophysical properties across pseudo-critical temperature, heat transfer may get affected. It may get enhanced, deteriorated or remain unaltered. Various studies, experimental and analytical, have been carried out in the past using SCF to evaluate their heat transfer behavior. Various heat transfer correlations have been proposed by researchers catering to different operating range of parameters. Also, studies have been dedicated by researchers to investigate fluid-to-fluid scaling of SCF based on which scaling laws were proposed by them. This way prototypic fluid behavior can be predicted if the model fluid conditions are known. This paper presents a latest review of the scaling laws and heat transfer correlations applicable to SC fluids. Illustrations have also been presented considering reference experimental data from literature to get a feel about how these scaling laws fare among themselves. Various heat transfer correlations have been compared and important observations have also been discussed in this article.
机译:超临界流体(SCF)由于其各种优点,在未来的能源系统中具有潜在的应用。其中一个应用是核反应堆,在先进的反应堆设计中,超临界水和二氧化碳都被提议作为冷却剂。更高的效率、简化的系统、更低的运营成本是促使研究机构在应用中使用这些流体的一些优势。然而,使用这些液体也存在一些挑战。这些流体的传热行为就是其中之一。由于超临界流体在伪临界温度下的热物理性质发生巨大变化,传热可能会受到影响。它可能会增强、恶化或保持不变。过去,人们利用SCF对其传热行为进行了各种实验和分析研究。研究人员针对不同的操作参数范围提出了各种传热关联式。此外,研究人员还致力于研究SCF的流体对流体的标度,并根据他们提出的标度定律进行了研究。这样,如果已知模型流体条件,就可以预测原型流体行为。本文介绍了适用于SC流体的标度定律和传热关联式的最新综述。还提供了一些插图,考虑了文献中的参考实验数据,以了解这些标度定律之间的关系。本文比较了各种传热关联式,并讨论了重要的观测结果。

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