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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation on heat transfer characteristics of high pressures water in a vertical upward annular channel
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Experimental investigation on heat transfer characteristics of high pressures water in a vertical upward annular channel

机译:垂直向上环形通道内高压水传热特性的实验研究

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摘要

Heat transfer experiments of high-temperature high-pressure water in a vertical upward annulus have been completed at Xi'an Jiaotong University. Particular attention was paid on heat transfer of water at sub-critical pressures with respect to the engineering application of nuclear reactor in this pressure region. Experimental parameters covered the pressures of 11-25MPa, mass fluxes of 350-1000kg/m_2s and heat fluxes up to 600kW/m_2. The gap of the annular flow channel was 6.0mm with an effective heated length on the inner heated rod of 1400mm. According to the experimental results, it was found that the increase of pressure and heat flux may lead to heat transfer deterioration in the steam-water two-phase region, whereas the increase of mass flux enhances heat transfer significantly. Two types of heat transfer deterioration, DNB and Dryout, were discussed and analyzed in detail. Based on the experimental data, heat transfer correlations were obtained to predict heat transfer in single-phase and two-phase regions. In addition, the present paper compared heat transfer difference of sub-critical pressure water in annulus and circular tube. At similar test parameters, annular channel has a better heat transfer performance in comparison with circular tube. Finally, heat transfer characteristics of water at sub-critical and super-critical pressures in the annulus were compared and discussed, which differed a lot at both normal and deteriorated heat transfer conditions.
机译:西安交通大学已经完成了高温高压水在垂直向上环空的传热实验。关于在该压力区域中核反应堆的工程应用,特别关注了亚临界压力下水的传热。实验参数涵盖了11-25MPa的压力,350-1000kg / m_2s的质量通量和高达600kW / m_2的热通量。环形流动通道的间隙为6.0mm,内部加热棒上的有效加热长度为1400mm。根据实验结果,发现压力和热通量的增加可能导致蒸汽-水两相区域中的热传递恶化,而质量通量的增加显着增强了热传递。详细讨论了两种传热恶化类型,即DNB和变干。基于实验数据,获得了传热相关性,以预测单相和两相区域中的传热。此外,本文还比较了亚临界压力水在环空和圆管中的传热差异。在相似的测试参数下,与圆形管相比,环形通道具有更好的传热性能。最后,对环空中亚临界和超临界压力下水的传热特性进行了比较和讨论,这在正常和恶化的传热条件下都有很大的不同。

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