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Improvement of buoyancy and acceleration parameters for forced and mixed convective heat transfer to supercritical fluids flowing in vertical tubes

机译:改进了对垂直管中流动的超临界流体进行强制和混合对流传热的浮力和加速度参数

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摘要

An analytical approach is applied to examine the buoyancy and acceleration effects on forced and mixed convective heat transfer at supercritical pressures. Two non-dimensional parameters have been developed for these effects. In the process of developing the buoyancy parameter (Bu), a new relationship between momentum and thermal boundary layer was used. And the van der Waals equation was adopted in developing acceleration parameter (Ac). Thresholds of Bu and Ac have been theoretically established as 1.3 × 10~(-5) and 3.3 × 10~(-6), respectively. These non-dimensional parameters were validated against experimental data obtained with carbon dioxide flowing through a heated tube upward and downward vertically. With the help of the developed Bu, Ac and their thresholds, the complicated experimental phenomena can be explained more reasonably. A heat-transfer correlation has been developed, in terms of these buoyancy and acceleration numbers, with an extensive supercritical carbon dioxide heat-transfer database. It provides better prediction accuracy than three other correlations with 90% of the experimental data predicted within the ±30% error range.
机译:应用一种分析方法来检查浮力和加速对超临界压力下强迫和混合对流换热的影响。已经针对这些效果开发了两个无量纲参数。在开发浮力参数(Bu)的过程中,使用了动量与热边界层之间的新关系。在开发加速度参数(Ac)时采用了范德华方程。理论上将Bu和Ac的阈值确定为1.3×10〜(-5)和3.3×10〜(-6)。这些无量纲参数是根据二氧化碳在垂直向上和向下流过加热管的实验数据验证的。借助发达的Bu,Ac及其阈值,可以更合理地解释复杂的实验现象。就这些浮力和加速度而言,已经开发了具有广泛超临界二氧化碳热传递数据库的热传递相关性。与其他三个相关性相比,它提供了更好的预测精度,其中90%的实验数据预测在±30%的误差范围内。

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