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Measurement of Relative Power Distribution in Axially Heterogeneous Core by Gamma-Counting of Each Fuel Plate

机译:通过每个燃料板的伽玛计数测量轴向非均质堆芯的相对功率分布

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In order to understand physics properties of axially heterogeneous LMFBR cores, relative power distribution was measured using a γ-counting method in zone-type partial mockup cores. By introducing an inner blanket at the core midplane, flat power distribution is achieved compared with that of conventional homogeneous cores, Axial power peaking factor is obtained from the measured power distribution in the cores having the inner blanket of different geometries.Investigation is also made on distortion of the power distribution caused by simulated B4C control rods having different 10B enrichments (20 and 55%), which are partially inserted into an upper half of the core, Discussions are made on degree of power distortion and its propagation distance. It is observed that the inner blanket mitigates this disturbance caused in the upper half of the core to a lower half of the core.The calculated distribution agrees quite well with the measured power distribution within experimental errors both in the inner blanket and core regions, while significant discrepancy is observed in an outer blanket region. The calculation predicts well the degree of the distortion of the power distribution caused by the simulated B4C control rods.
机译:为了理解轴向异质LMFBR铁心的物理特性,在区域型部分模型铁心中使用γ计数法测量了相对功率分布。通过在核心中平面处引入内部覆盖层,与传统的均质核心相比,获得了平坦的功率分布,从具有不同几何形状的内部覆盖层的核心中测得的功率分布中获得了轴向功率峰值因数。由模拟的B4C控制棒引起的功率分布畸变,该控制棒具有不同的10B富集度(分别为20和55%),部分插入芯的上半部分。讨论了功率畸变的程度及其传播距离。观察到内层毯减轻了在芯的上半部到芯下半部分引起的这种扰动。计算的分布与内层毯和芯区域中的实验误差范围内的实测功率分布非常吻合,而在外毯区域观察到显着差异。计算结果很好地预测了由模拟的B4C控制杆引起的功率分配失真程度。

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