首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >INFLUENCE OF BOILING INITIATION SURFACE SUPERHEAT ON SUBCOOLED WATER FLOW BOILING CRITICAL HEAT FLUX IN A SUS304 CIRCULAR TUBE AT HIGH LIQUID REYNOLDS NUMBER
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INFLUENCE OF BOILING INITIATION SURFACE SUPERHEAT ON SUBCOOLED WATER FLOW BOILING CRITICAL HEAT FLUX IN A SUS304 CIRCULAR TUBE AT HIGH LIQUID REYNOLDS NUMBER

机译:SUS304圆管中高液体雷诺数下沸腾起始表面过热对过冷沸腾沸腾临界热通量的影响

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The subcooled boiling heat transfer and the steady-state critical heat flux (CHF) in a vertical circular tube for the flow velocities (u=3.95 to 30.80 m/s) were systematically measured by the experimental water loop comprised of a multistage canned-type circulation pump with high pump head. The SUS304 test tube of inner diameter (d=6 mm) and heated length (L=59.5 mm) was used in this work. The boiling initiation noise of outer surface of the test tube in the open air was simultaneously measured up to CHF point by the sound level meter (SLM) and the microphone of a video camera (MP). The outer surface temperatures of the SUS304 test tube with heating were also observed by an infrared thermal imaging camera (ITIC) and the color temperatures of outer surface of the test tube in the open air were observed by a video camera (VC). The subcooled boiling heat transfer and CHF for SUS304 circular tube were compared with the values calculated by authors' and other workers' correlations for the subcooled flow boiling heat transfer. The influences of flow velocity on the boiling initiation surface heat flux, the boiling initiation surface superheat, the subcooled boiling heat transfer and the CHF were investigated into details based on the experimental data. At the flow velocities higher than 13.3 m/s, boiling initiation surface heat fluxes were close to the CHFs and surface superheats at the CHF were over to the homogeneous spontaneous nucleation temperature as well as the lower limit of the heterogeneous spontaneous nucleation temperature. The dominant mechanism of the subcooled water flow boiling CHF on the SUS304 circular tube was discussed at high liquid Reynolds number.
机译:垂直圆形管中过冷沸腾的传热和稳态临界热通量(CHF)对流速(u = 3.95至30.80 m / s)的测量是通过多级罐装式水循环实验系统进行的高泵头循环泵。这项工作使用内径为d = 6 mm且加热长度为L = 59.5 mm的SUS304试管。通过声级计(SLM)和摄像机(MP)的麦克风,同时测量了试管外表面在室外的沸腾开始噪声,直至CHF点。还通过红外热像仪(ITIC)观察带加热的SUS304试管的外表面温度,并通过摄像机(VC)观察露天的试管外表面的色温。将SUS304圆管的过冷沸腾换热和CHF与作者和其他工人的相关性计算得出的值进行了比较。根据实验数据,详细研究了流速对沸腾起始表面热通量,沸腾起始表面过热,过冷沸腾热传递和CHF的影响。在流速高于13.3 m / s时,沸腾起始表面热通量接近于CHF,CHF处的表面过热超过了均匀自发成核温度以及非均匀自发成核温度的下限。在高雷诺数下讨论了SUS304圆管上过冷水沸腾CHF的主要机理。

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