首页> 外文期刊>Journal of Nuclear Science and Technology >ANALYSES OF BURNUP AT PLUTONIUM SPOTS IN URANIUM-PLUTONIUM MIXED OXIDE FUELS IN LIGHT WATER REACTORS BY NEUTRON TRANSPORT AND BURNUP CALCULATIONS
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ANALYSES OF BURNUP AT PLUTONIUM SPOTS IN URANIUM-PLUTONIUM MIXED OXIDE FUELS IN LIGHT WATER REACTORS BY NEUTRON TRANSPORT AND BURNUP CALCULATIONS

机译:轻水反应堆中铀-LU混合氧化物燃料中SP点的燃耗的中子输运和燃耗计算分析

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Plutonium concentrations and burnup at Pu spots were calculated in U-Pu mixed oxide (MOX) fuel pellets for light water reactors with the neutron transport and burnup calculation code VIMBURN. The calculation models were suggested for Pu spots and U matrices in a heterogeneous MOX fuel pellet. The calculated Pu concentrations and burnup at Pu spots were compared with the PIEs data in a MOX pellet (38.8 MWd/kgHM). The calculated Pu concentrations agreed by 5-18% with the measured ones, and the calculated burnup did by less than 10% with the estimated one with the measured Nd concentrations. Commercial PWR types of MOX fuels were also analyzed with the calculation code and the models. Burnup at Pu spot increased as the distance was greater from the radial center of a MOX fuel Pellet. Burnup at Pu spots in the peripheral region became 3-5 times higher than pellet average burnup of 40 MWd/kgHM. The diameters (20-100 mu m) of Pu spots were not found a significant factor for burnup at Pu spots. In the outer half volume region (outer than r/r(0)=0.7) of a MOX fuel pellet, burnup at Pu spots exceeded 70 MWd/kgHM (the threshold burnup of microstructure change in UO2, fuel pellet) at pellet average burnup of 14-30 MWd/kgHM. [References: 18]
机译:使用中子传输和燃耗计算代码VIMBURN,在轻水反应堆的U-Pu混合氧化物(MOX)燃料颗粒中计算了Pu点处的concentrations浓度和燃耗。建议使用非均质MOX燃料颗粒中的Pu点和U矩阵的计算模型。将计算出的Pu浓度和Pu点处的燃耗与MOX颗粒(38.8 MWd / kgHM)中的PIEs数据进行比较。计算得出的Pu浓度与测得的Pu浓度一致为5-18%,而计算得出的燃尽率与测得的Nd浓度相比估计不足10%。还使用计算代码和模型分析了商用PWR类型的MOX燃料。随着距MOX燃料球团径向中心的距离变大,Pu点处的燃耗增加。外围区域Pu点的燃耗比颗粒平均燃耗(40 MWd / kgHM)高3-5倍。没有发现Pu斑点的直径(20-100μm)是引起Pu斑点燃尽的重要因素。在MOX燃料颗粒的外半体积区域(大于r / r(0)= 0.7)中,Pu点的燃耗超过颗粒平均燃耗的70 MWd / kgHM(UO2的微结构变化阈值燃耗,燃料粒)。 14-30 MWd / kgHM。 [参考:18]

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