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Gas releases and rod internal pressure of BN-added UO2 fuel

机译:加入BN的UO2燃料的气体释放和杆内压力

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摘要

Gadolinium (Gd), in the form of gadolinia (Gd2O3), has been used as integral burnable absorber to UO2 fuel by different companies. Recently, alternative burnable absorber materials are under investigation. In this paper, the results of the study on the use of boron mixed in UO2 as an integral burnable absorber are presented. Boron nitride was selected as the form of B to be added to UO2 fuel based on the stability of B during sintering. Fuel performance analysis code FRAPCON-UNI, which is based on FRAPCON code and has the modifications for boron and helium generation and gasses release models, was used for the calculation of fuel performance. Helium generation was calculated using a model and the result was verified against ORIGEN calculation results. Gas release calculation was based on Forsberg Massih model and different characteristics of the gasses were considered. Power histories of maximum burnup rods (B rod, no B rod, and Gd rod) were selected from reactor physics data. The results indicated significant increases in rod internal pressure by 500 ppm boron addition at the end of life with minimum influence of a grain boundary boron fraction due to high diffusivity of helium and nitrogen. © 2015 Atomic Energy Society of Japan. All rights reserved
机译:ado(Gd2O3)形式的d(Gd)已被多家公司用作UO2燃料的整体可燃吸收剂。最近,正在研究替代的可燃吸收剂材料。本文介绍了使用UO2中混合的硼作为整体可燃吸收剂的研究结果。基于烧结期间B的稳定性,选择氮化硼作为B的形式添加到UO2燃料中。燃料性能分析代码FRAPCON-UNI是基于FRAPCON代码的,它对硼和氦的生成以及气体释放模型进行了修改,用于计算燃料性能。使用模型计算氦气生成量,并将结果与​​ORIGEN计算结果进行验证。气体释放量基于Forsberg Massih模型计算,并考虑了气体的不同特性。从反应堆物理数据中选择了最大燃尽棒(B棒,无B棒和Gd棒)的功率历史。结果表明,由于氦和氮的高扩散性,使用寿命结束时,杆内压力显着增加了500 ppm的硼,而对晶界硼的影响最小。 ©2015日本原子能协会。版权所有

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