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首页> 外文期刊>International Journal of Heat and Mass Transfer >Enhancing deteriorated heat transfer of supercritical nitrogen in a vertical tube with wire matrix insert
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Enhancing deteriorated heat transfer of supercritical nitrogen in a vertical tube with wire matrix insert

机译:用线矩阵插入增强垂直管中超临界氮的劣化传热

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In this study, hiTRAN™ wire matrix tube insert was used to improve the heat transfer deterioration of supercritical nitrogen (N_2) in a heated tube caused by the effects of thermo-physical property variations and buoyancy force. Heat transfer experiments were carried out with N_2 flowing upwardly in a vertical circular tube with and without the wire matrix insert under a sequence of experimental conditions including pressures of 35 and 40 bar, mass flow rate of 27.6 and 41.3 g/min and constant heat flux conditions at 6.8, 8.0 and 9.3 kW/m~2, respectively. Experimental results show that N_2 exhibits similar heat transfer behavior when transiting across the pseudo-critical point as other fluids such as water and CO_2. Due to the addition of the wire matrix insert, that intensified the overall fluid mixing in the test tube, the heat transfer performance of N_2 was enhanced by more than 42% and up to 2.35 times while the pressure drop increase was negligible compared to the system inlet pressure. Moreover, it has been demonstrated that there might exist an optimum combination of experimental conditions leading to the maximum performance of the wire matrix insert. Furthermore, as the results show, with the Dittus-Boelter correlation and correlations for water and CO_2 falling short of fitting the heat transfer data of N_2, a heat transfer correlation, exclusively for N_2 going through the pseudo-critical point is needed. The findings in this study also reveal that both supercritical N_2 internal flow heat transfer and the use of wire matrix insert to enhance the deteriorated heat transfer of supercritical fluids are promising topics and require more significant attentions in future studies.
机译:在本研究中,HITAN™线矩阵管插入物用于改善由热物理性能变化和浮力的效果引起的加热管中超临界氮(N_2)的传热劣化。在垂直圆管中向上流动的N_2进行传热实验,在一系列实验条件下,包括35和40巴的压力,质量流速为27.6和41.3g / min,并且恒定热通量条件分别为6.8,8.0和9.3 kW / m〜2。实验结果表明,当作为其他流体(如水和CO_2)过滤时,N_2在将伪关键点转换出现相似的传热行为。由于加入钢丝基质插入件,将整体流体混合在试管中,N_2的热传递性能增强超过42%,高达2.35倍,而压力下降与系统相比可忽略不计入口压力。此外,已经证明可能存在的实验条件的最佳组合,从而导致线矩阵插入物的最大性能。此外,随着结果表明,利用DTTUS-FUELTS-B和CO_2的相关性和缩短拟合N_2的传热数据的相关性和相关性,需要一种传热相关性,专门用于通过伪关键点的N_2。该研究的发现还揭示了超临界N_2内部流动传热和线矩阵插入件以增强超临界流体的劣化热传递是有前途的主题,并且需要更加重要的注意事项。

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