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Core Design and Analysis of Axially Heterogeneous Boiling Water Reactor for Burning Transuranium Elements

机译:燃烧铀元素的轴向非均匀沸腾水堆堆芯设计与分析

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The resource-renewable boiling water reactor (RBWR) is an innovative boiling water reactor that has the capability to breed or to burn transuranium elements (TRUs). Core characteristics of the RBWR of the TRU burner type were evaluated by two different core analysis methods. The RBWR core features an axially heterogeneous configuration, which consists of an internal blanket region between two seed regions, to achieve the TRU multi-recycling capability while maintaining a negative void reactivity coefficient. Axial power distribution of the TRU burner core tends to be more heterogeneous because the isotopic composition ratio of fertile TRUs to fissile TRUs becomes larger in the TRU burner-type core than in the breeder-type core and the seed regions need to be axially shorter than that of the breeder-type core. Thus core analysis of the TRU burner-type core is more challenging. A conventional diffusion calculation using nuclear constants prepared by two-dimensional lattice calculations was performed by Hitachi, while the calculation using nuclear constants prepared by three-dimensional calculations and axial discontinuity factors was performed by the University of Michigan to provide a more sophisticated treatment of the axial heterogeneity. Both calculations predicted similar axial power distributions except in the region near the boundary between fuel and plenum. Both calculations also predicted negative void reactivity coefficients throughout the operating cycle. Safety analysis was performed by Massachusetts Institute of Technology for the all-pump trip accident, which was identified as the limiting accident for the RBWR design. The analysis showed the peak cladding temperature remains below the safety limit. Detailed fuel cycle analysis by University of California, Berkeley, showed that per electrical power generated, the RBWR is capable of incinerating TRUs at about twice the rate at which they are produced in typical pressurized water reactors.
机译:资源可再生沸水反应堆(RBWR)是一种创新的沸水反应堆,具有繁殖或燃烧铀元素(TRU)的能力。通过两种不同的堆芯分析方法评估了TRU燃烧器类型的RBWR的堆芯特性。 RBWR核具有轴向异质构型,该构型由两个种子区域之间的内部覆盖区域组成,以实现TRU的多次回收能力,同时保持负的空洞反应系数。 TRU燃烧器芯的轴向功率分布趋于更加异质,因为可育TRU与裂变TRU的同位素组成比在TRU燃烧器型芯中变得比在繁殖型芯中更大,并且种子区域的轴向长度必须小于育种型核心。因此,对TRU燃烧器型芯的芯分析更具挑战性。日立公司进行了使用二维晶格计算所准备的核常数的常规扩散计算,而密歇根大学使用了三维计算和轴向不连续因数所使用的核常数的计算,可以对原子核进行更精细的处理。轴向异质性。两种计算都预测了相似的轴向功率分布,除了在燃料和气室之间的边界附近的区域。两种计算都预测了整个操作周期中的负空洞反应系数。麻省理工学院对全泵跳闸事故进行了安全分析,该事故被认为是RBWR设计的极限事故。分析表明,包层的峰值温度仍低于安全极限。加州大学伯克利分校的详细燃料循环分析表明,每产生一个电能,RBWR就能以典型加压水反应堆中TRU产生速度的两倍来焚化TRU。

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