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DATA ANALYSIS OF 64 ROD BUNDLES REFLOOD HEAT TRANSFER EXPERIMENT

机译:64杆束的数据分析reshood传热实验

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The test data of 64 rod bundles reflood heat transfer experiment performed by China Institute of Atomic Energy are analyzed. The heater rods are electrically powered and have a diameter of 9.5 mm and a length of 4.3 m arranged in a 8 × 8 array with a 12.6 mm pitch. The test parameter is in the range of 10 - 500 kg/(m~2·s) for injection water mass flux, 20 - 80°C for injection water temperature, 500 - 600°C for initial heater rod temperature, 0 - 1.1 kW/m for heating power, respectively. The system pressure is atmosphere pressure. Two kinds of spacer grids with and without mixing vanes are adopted to investigate their effect on heat transfer. The result shows that rod wall temperature downstream the spacer grid with mixing vanes is lower than that without mixing vanes, which indicates that the heat transfer is enhanced with mixing vanes. The rewetting velocity is nearly a constant under a certain test condition. The experimental values of rewetting velocity are compared with heat conduction controlled theories. At low mass flow rate, one-dimensional conduction gives agreement with experiment; while at high mass flow rate, the two-dimensional conduction theory is shown to be in agreement with experiment data. The RELAP5/MOD3.3 reflood model is assessed against the test data. Comparison of code prediction and measured data indicates that the code predicts quench time relatively well but the peak rod temperature differs.
机译:分析了中国原子能研究所执行的64杆捆捆的RECTHOD热传递实验的测试数据。加热器杆是电动的,直径为9.5mm,长度为4.3米,布置在8×8阵列中,具有12.6mm间距。试验参数的喷射水质量通量为10-500kg /(m〜2·s),注射水温度为20-80°C,初始加热器杆温度为500-600°C,0 - 1.1 KW / M分别用于加热功率。系统压力是大气压。采用两种具有和不使用叶片的间隔栅格来研究它们对热传递的影响。结果表明,下游的杆壁温度与混合叶片的间隔件栅格低于没有混合叶片的间隔件,这表明热传递通过混合叶片增强。在某种测试条件下,重复速度几乎是恒定的。将重量速度的实验值与热传导控制理论进行比较。在低质量流量下,一维传导与实验协议;虽然以高质量流量,但是二维传导理论被证明与实验数据一致。 RETAP5 / MOD3.3 RESHODOD模型被评估在测试数据。代码预测和测量数据的比较表明代码预测骤冷时间相对良好,但峰值杆温度不同。

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