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COMPARATIVE STUDY OF BASIC REACTOR PHYSICS OF THE DFR CONCEPT USING U-PU AND TRU FUEL SALTS

机译:使用U-PU和TRU燃料的DFR概念基本反应器物理对比研究

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The Dual Fluid Reactor (DFR) is a molten salt fast reactor developed by the IFK based on the Gen-IV Molten-Salt Reactor (MSR) and the Liquid-Metal Cooled Reactor (SFR, LFR) concepts. The analysis reported focuses on the comparison between previous neutronic calculations with the default fuel salt of U-Pu mixture and new ones with a transuranium (TRU) salt fuel option under steady state conditions. They include criticality, neutron spectrum, spatial flux distribution and temperature coefficient values. Fuel based on molten TRU salts has already been considered for the MSFR and other molten salt reactor designs. Therefore, the DFR for the first time has a comparable baseline with other molten salt reactors, so that its performance with TRU salt fuel can be assessed.
机译:双流体反应器(DFR)是IFK基于Gen-IV熔融反应器(MSR)和液态金属冷却反应器(SFR,LFR)概念而开发的熔盐快速反应器。该分析报告侧重于先前中性计算与U-Pu混合物的默认燃料盐与稳态条件下的经铀(Tru)盐燃料选择的默认燃料盐之间的比较。它们包括临界,中子谱,空间助焊剂分布和温度系数值。基于熔融特鲁斯盐的燃料已经考虑用于MSFR和其他熔盐反应堆设计。因此,第一次DFR具有与其他熔融盐反应器的可比基线,因此可以评估其与Tru盐燃料的性能。

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