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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Power-to-melts of uranium-plutonium oxide fuel pins at a beginning-of-life condition in the experimental fast reactor JOYO
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Power-to-melts of uranium-plutonium oxide fuel pins at a beginning-of-life condition in the experimental fast reactor JOYO

机译:实验快堆JOYO中处于寿命开始状态的铀-oxide-氧化物燃料销的功率熔融

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Power-to-melts of uranium-plutonium oxide fuel pins at an initial startup condition were experimentally obtained from the B5D-2 test in the experimental fast reactor JOYO in Oarai Engineering Center. MCNP code calculations were combined with burnup measurements to determine linear heat rating of the test fuel pins. To identify the axial incipient melting positions corresponding to the power-to-melts, solidified grain morphology and molten fuel axial movements were characterized. Extensive observations on longitudinal ceramographs allowed classifying molten fuel settlements near bottom and top extents of axial fuel melting into three types. The power-to-melts depended slightly on fuel-to-cladding gap sizes and clearly on both oxygen-to-metal ratios and densities of fuel pellets. These dependencies resulted from the fuel pellet cracking and relocation behavior, which fairly improves heat transfers across the gaps. Also, the power-to-melt at the bottom position was higher than that at the top position due to an axial gradient of cladding temperatures in each fuel pin. (C) 2003 Elsevier B.V. All rights reserved. [References: 19]
机译:铀-p氧化物燃料棒在初始启动条件下的熔炼功率是通过在Oarai Engineering Center的实验快速反应堆JOYO中的B5D-2试验获得的。 MCNP代码计算与燃耗测量值相结合,以确定测试燃料销的线性热额定值。为了确定与熔化功率相对应的轴向初始熔化位置,对凝固的晶粒形态和熔融燃料的轴向运动进行了表征。在纵向陶瓷扫描仪上进行的广泛观察可以将轴向燃料熔化的底部和顶部附近的熔融燃料沉降分为三类。熔化功率略微取决于燃料与包层的间隙尺寸,并且明显取决于燃料金属与氧的比率和燃料颗粒的密度。这些依赖性是由燃料颗粒的破裂和重新定位行为引起的,该行为相当地改善了跨间隙的传热。而且,由于每个燃料销中包层温度的轴向梯度,在底部位置的熔化功率高于在顶部位置的熔化功率。 (C)2003 Elsevier B.V.保留所有权利。 [参考:19]

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