首页> 外文会议>Conference on physics of reactors >EVALUATION OF THE CASL BWR FUEL ASSEMBLY BENCHMARK USING THE TRANSLAT LATTICE PHYSICS CODE WITH 16-SECTOR FUEL CELLS
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EVALUATION OF THE CASL BWR FUEL ASSEMBLY BENCHMARK USING THE TRANSLAT LATTICE PHYSICS CODE WITH 16-SECTOR FUEL CELLS

机译:使用16扇区燃料电池的转运晶格物理密码评估Casl BWR燃料组件基准测试

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The TRANSLAT lattice physics code is used to determine the eigenvalue, reaction rate, and fuel depletion parameters for a highly-heterogeneous BWR fuel assembly lattice using a high-definition 16-sector fuel cell model. The BWR lattice is a classic benchmark problem that also represents the base fuel assembly design selected by CASL for developing a comprehensive reactor simulation technology. An evaluation of this benchmark shows that TRANSLAT is capable of predicting k-infinites to within 37 pcm of MCNP at 0 hours, 41 pcm of RACER at 0 hours, and 135 pcm of RACER at peak reactivity in the depletion. The benchmark also shows that TRANSLAT calculates Fission rate distributions with an RMS of 0.6% relative to MCNP at 0 hours and 1.2%-1.5% of RACER at 0 hours and 17,000 hours. Differences in the peak fission rod were nominally predicted to be 0.4% to 0.7%. It is also shown that TRANSLAT calculated capture rate distributions with an RMS of 0.3% relative to MCNP.
机译:使用高清16扇区燃料电池模型,用于使用高清16扇店燃料电池模型来确定高度异构BWR燃料组件晶格的特征值,反应速率和燃料耗尽参数。 BWR格子是一种经典的基准问题,也代表CASL选择的基础燃料组件设计,用于开发综合反应堆仿真技术。对该基准测试的评估表明,Translat能够在0小时,在0小时的0小时内预测k-Inminites在37pcm的MCNP中,在0小时,135pcm的速度下耗尽的峰值反应性。该基准还表明,Translat在0小时的0小时和1.2%-1.5%的速度下为0.6%的RMS计算裂变率分布。0小时和17,000小时。峰值裂变杆的差异标称预测为0.4%至0.7%。还示出了与MC​​NP相对于MCNP的RMS表示计算的捕获率分布。

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