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A New Correlation for the Turbulent Prandtl Number in Upward Rounded Tubes in Supercritical Fluid Flows

机译:超临界流体流动中向上圆管湍流普朗特数的新相关性

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Numerical results show that at supercritical pressures, once the buoyancy force increases, the effect of the turbulent Prandtl number, Pr,, on convective heat transfer becomes considerable. This phenomenon has not been adequately addressed in the literature. In this study, the effect of the turbulent Prandtl number on the rate of heat transfer in both enhanced and deteriorated regimes of heat transfer to supercritical fluid flows has been extensively investigated. Having realized that variations of the turbulent Prandtl number can affect the model predictions so greatly, a new correlation to express the changes of Pr, with respect to flow conditions in a supercritical environment is developed. Effects of various important parameters such as heat flux, mass flux, and fluid pressure are included in the proposed correlation. This correlation has been modified to be applicable for different supercritical fluids. The comparison with various experimental data shows that by implementing the new correlation of Pr, in the numerical code, it is possible to significantly improve the simulation results. Such a correlation seems to be the first one introduced in the literature for a supercritical fluid flow.
机译:数值结果表明,在超临界压力下,一旦浮力增加,湍流普朗特数Pr对对流换热的影响就变得相当大。文献中尚未充分解决这种现象。在这项研究中,湍流普朗特数对传热至超临界流体的增强和恶化状态下传热速率的影响已得到广泛研究。已经认识到湍流普朗特数的变化会极大地影响模型预测,因此,针对超临界环境中的流动条件,开发了一种新的相关性来表达Pr的变化。建议的相关性包括各种重要参数的影响,例如热通量,质量通量和流体压力。修改了此相关性,以适用于不同的超临界流体。与各种实验数据的比较表明,通过在数字代码中实现Pr的新相关性,可以显着改善仿真结果。这种关联似乎是文献中针对超临界流体流动引入的第一个关联。

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