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Validation of PHITS Spallation Models from the Perspective of the Shielding Design of Transmutation Experimental Facility

机译:Trans变实验设施屏蔽设计视角下的PHITS散裂模型验证

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The impact of different spallation models implemented in the particle transport code PHITS on the shielding design of Transmutation Experimental Facility is investigated. For 400-MeV proton incident on a lead-bismuth eutectic target, an effective dose rate at the end of a thick radiation shield (3-m-thick iron and 3-m-thick concrete) calculated by the Liège intranuclear cascade (INC) model version 4.6 (INCL4.6) coupled with the GEMcode (INCL4.6/GEM) yields about twice as high as the Bertini INC model (Bertini/GEM). A comparison with experimental data for 500-MeV proton incident on a thick lead target suggest that the prediction accuracy of INCL4.6/GEM would be better than that of Bertini/GEM. In contrast, it is found that the dose rates in beam ducts in front of targets calculated by the INCL4.6/GEMare lower than those by the Bertini/GEM. Since both models underestimate the experimental results for neutron-production doubledifferential cross sections at 180? for 140-MeV proton incident on carbon, iron, and gold targets, it is concluded that it is necessary to allow a margin for uncertainty caused by the spallation models, which is a factor of two, in estimating the dose rate induced by neutron streaming through a beam duct.
机译:研究了粒子传输代码PHITS中实现的不同散裂模型对Trans变实验设施的屏蔽设计的影响。对于入射到铅铋共晶靶上的400 MeV质子,由列日核内级联反应(INC)计算的厚辐射屏蔽层(3米厚的铁和3米厚的混凝土)末端的有效剂量率4.6版(INCL4.6)模型与GEMcode(INCL4.6 / GEM)结合使用,其产量大约是Bertini INC模型(Bertini / GEM)的两倍。与在厚铅靶上入射的500 MeV质子的实验数据进行比较表明,INCL4.6 / GEM的预测精度将优于Bertini / GEM。相反,发现INCL4.6 / GEM计算出的目标前方束管中的剂量率低于Bertini / GEM。由于这两个模型都低估了180℃时产生中子的双微分截面的实验结果。对于入射到碳,铁和金靶上的140MeV质子,得出结论,在估算由中子流引起的剂量率时,有必要留出由散裂模型引起的不确定性的余量(是2的因数)。通过束管。

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