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Irradiation on Behavior of Large Grain UO2 Fuel Rod Irradiati Behavior of Large Grain UO2 Fuel Rod by Active Powder

机译:活性粉末辐照大颗粒UO2燃料棒的行为辐照大颗粒UO2燃料棒的行为

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The internal pressures in the large and normal grain UO2 pellet rods irradiated at a linear heat rate of <29kW/m up to 21GWd/t U were studied to clarify the effect of in-pile densification and fission gas release. The large grain (grain size: 23μm) pellets were manufactured from the active powder produced by the new ADU (ammonium diuranate) process. The pore structure of the large grain pellets mainly consisted of coarse pores that were formed by adding a poreformer. The pore structure of the normal grain (8μm) pellets made from the current powder consisted of fine pores. In-pile and out-of-pile densification of the large grain pellets were smaller than those of the normal pellets and occurred owing to the disappearance of fine pores as fabricated. The increase in free volume of the large grain fuel rod did not occur significantly owing to its smaller densification during the initial irradiation period. The fuel stack length change during irradiation was predicted with the in-pile densification and swelling model. The increase in grain size decreased fission gas release by diffusion. As a result, it was found that the internal pressure of the large grain fuel rod was reduced after 10GWd/t U.
机译:研究了大型和普通谷物UO2颗粒棒中的线性压力<29kW / m到21GWd / t U辐照的内部压力,以阐明堆内致密化和裂变气体释放的影响。用新的ADU(二铀酸铵)工艺生产的活性粉末制成大颗粒(粒径:23μm)的颗粒。大颗粒粒料的孔结构主要由通过加入造孔剂形成的粗孔组成。由当前粉末制成的普通颗粒(8μm)颗粒的孔结构由细孔组成。大颗粒颗粒的堆内和堆外致密化小于正常颗粒,并且由于所制造的细孔消失而发生。大颗粒燃料棒的自由体积的增加由于在初始辐照期间的较小的致密化而没有显着增加。利用堆内致密化和溶胀模型预测了辐照期间燃料堆长的变化。晶粒尺寸的增加减少了扩散引起的裂变气体的释放。结果发现,在10GWd / t U之后,大颗粒燃料棒的内部压力降低了。

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