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Progress on the development of new correlations under the framework of the IAEA Coordinated Research Programme on heat transfer in SCWR's

机译:在国际原子能机构“超临界水冷堆”传热协调研究计划框架内开发新关系的进展

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This paper begins with an introduction designed to provide researchers who are new to field of heat transfer to fluids at supercritical pressure with a brief picture of early developments, and to set the scene for the review of work on the development of new correlations for such fluids under the framework of the IAEA CRP. These are needed because of the active consideration now being given to water-cooled nuclear reactors operating at pressures above the critical value. Work on the development of a trans-critical look-up table aimed at covering the region near the critical point is outlined. A very large heat transfer databank has been compiled and subjected to a thorough screening process. It covers a wide range of conditions and has been used for the assessment of the performance of a number of empirical equations. A detailed error analysis was carried out for the most promising ones and an examination of parametric trends was made. A new correlation is described which has been specifically designed to combine simplicity of structure, explicit connection with physically-based phenomena whilst being able to cover both normal and deteriorated heat transfer conditions. It avoids direct dependence of heat transfer coefficient on wall temperature. The performance of this correlation was evaluated using the data set of Herkenrath et al for water at supercritical pressure. Results from a recent experimental study of heat transfer to carbon dioxide at supercritical pressure under conditions of mixed convection have been used to develop a set of equations to describe the general behaviour observed. Comparisons are made between the performance of a number of equations and the data from the carbon dioxide experiments and also some for water. Finally, the development is outlined of physically-based, semi-empirical models aimed at extending an empirical equation for variable property forced convection heat transfer to fluids at supercritical pressure to account for influences of buoyancy and flow acceleration.
机译:本文以导言开头,旨在为在超临界压力下流体传热领域的新手提供简要的早期发展概况,并为审查此类流体新的相关性的研究工作奠定基础。在国际原子能机构“全面计划”框架内。之所以需要这些,是因为目前正在积极考虑在高于临界值的压力下运行的水冷核反应堆。概述了跨临界查找表的开发工作,该表旨在覆盖临界点附近的区域。已汇编了一个非常大的热传递数据库,并进行了全面的筛选过程。它涵盖了广泛的条件,并已用于评估许多经验方程的性能。针对最有前途的误差进行了详细的误差分析,并检查了参数趋势。描述了一种新的关联,该关联经过专门设计,可以将结构的简单性,显式连接与基于物理的现象相结合,同时能够涵盖正常的传热条件和恶化的传热条件。它避免了传热系数直接依赖于壁温。使用Herkenrath等人的超临界水数据集评估了这种相关性的性能。最近在混合对流条件下在超临界压力下将热量传递给二氧化碳的实验研究结果已用于开发一组方程式,以描述所观察到的一般行为。比较了许多方程式的性能和二氧化碳实验的数据,也比较了一些水的数据。最后,概述了基于物理的半经验模型的发展,该模型旨在扩展用于将超特性压力下的可变特性强制对流热传递至流体的经验方程式,以考虑浮力和流动加速度的影响。

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