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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Characteristics of the laminar convective heat transfer of molten salt in concentric tube
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Characteristics of the laminar convective heat transfer of molten salt in concentric tube

机译:熔盐在同心管中的层状对流传热特征

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In this paper, laminar convective heat transfer performance of molten salt with Reynolds number of 300-2300 and Grashof number of 8.56 x 10(4)-3.95 x 10(6) in a concentric tube heat exchanger is reported. The effects of temperature on the heat transfer coefficient of molten salt are experimentally studied with the temperature of 473 K-573 K. Results show that the measured Nusselt number is larger than that predicted by pure forced convective heat transfer correlations and the deviations decrease as Reynolds number increases. In addition, the experimental result displays a completely different dependence on the temperature from forced convective correlations. It is presumably that the radial density gradient gives rise to buoyancy motion resulting in the formation of natural convection and then strengthen the heat transfer performance in laminar region. By comparison, it is found that the experimental result follows the trend of laminar convective heat transfer correlations derived from traditional working medium, however, the traditional correlations cannot describe the molten salt adequately. Therefore, based on the experimental results and existing correlations, an improved correlation composed of forced convection term and pure natural convection term is proposed, and shows a good agreement with the experiment data with deviations less than +/- 15%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文报道,报道熔盐的层状导热性能300-2300的雷诺数和11.56×10(4)-3.95×10×10(6)的雷诺数为8.56×10(4)-3.95×10(6)。通过473k-573k的温度实验研究温度对熔盐的传热系数的影响。结果表明,测量的果汁数大于纯强迫对流传热相关性的较大,并且偏差减少为雷诺数量增加。此外,实验结果显示对来自强制对流相关性的温度完全不同的依赖性。据推测,径向密度梯度产生浮力运动,导致自然对流形成,然后加强层状区域的传热性能。通过比较,发现实验结果遵循来自传统工作介质的层状对流传热相关性的趋势,然而,传统的相关性不能充分描述熔盐。因此,基于实验结果和现有相关性,提出了由强制对流术语和纯自然对流术语组成的改进相关性,并与实验数据达成良好的偏差,偏差小于+/- 15%。 (c)2017 Elsevier Ltd.保留所有权利。

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