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Experimental and CFD Study on Natural circulation Phenomenon in Lead Bismuth Eutectic Loop

机译:铅铋共晶环中天然循环现象的实验性和CFD研究

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A test loop, HANS (Heavy metal Alloy Natural circulation Study loop) is installed in BARC (Bhabha Atomic Research Centre) for thermal hydraulic, instrumentation development and material compatibility related studies in Lead Bismuth Eutectic (LBE) coolant. Steady state natural circulation characteristics in the LBE loop were investigated at different power levels. Significant natural convection flow was observed in the experiments. It was found that the natural circulation was easily established and stabilized. It took only a few minutes to have a stable natural circulation at a constant power level. The natural circulation flow rate depends on the loop resistance and the temperature difference between the hot leg and the cold leg, as determined by the power level and the heat sink capacity. The heater power is varied from 1200W to 2700W and the temperature difference found across the heater is 80°C to 165°C. The natural circulation in the loop is simulated in a CFD code PHOENICS. The predictions of PHOENICS code are found to be in good agreement with the experimental data.
机译:一种测试回路,汉斯(重金属合金天然循环研究回路)安装在Barc(Bhabha原子研究中心),用于热液压,仪器仪表开发和材料相容性相关研究中的铅铋eutectic(LBE)冷却剂。在不同的功率水平下研究了LBE环路中的稳态天然循环特性。在实验中观察到显着的自然对流流程。发现自然循环很容易建立和稳定。只需几分钟就花了恒定功率水平稳定的自然循环。自然循环流速取决于热腿和冷腿之间的环路电阻和温度差,如功率水平和散热器容量所确定的。加热器功率从1200W变化到2700W,并且在加热器上发现的温度差为80°C至165°C。环路中的自然循环在CFD码噬菌体中模拟。发现Phoenics代码的预测与实验数据吻合良好。

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