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Volume 43 Issue 1
Feb.  2022
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Zhang Bin, Ma Xubo, Hu Kui, Chen Yixue, Wu Haicheng. Research on the Influence of 56Fe Evaluation Cross Section of CENDL-3.2 and ENDF/B-Ⅷ.0 on Shielding Calculation[J]. Nuclear Power Engineering, 2022, 43(1): 57-63. doi: 10.13832/j.jnpe.2022.01.0057
Citation: Zhang Bin, Ma Xubo, Hu Kui, Chen Yixue, Wu Haicheng. Research on the Influence of 56Fe Evaluation Cross Section of CENDL-3.2 and ENDF/B-Ⅷ.0 on Shielding Calculation[J]. Nuclear Power Engineering, 2022, 43(1): 57-63. doi: 10.13832/j.jnpe.2022.01.0057

Research on the Influence of 56Fe Evaluation Cross Section of CENDL-3.2 and ENDF/B-Ⅷ.0 on Shielding Calculation

doi: 10.13832/j.jnpe.2022.01.0057
  • Received Date: 2021-01-04
  • Rev Recd Date: 2021-09-18
  • Publish Date: 2022-02-01
  • CENDL-3.2 Library updated the 56Fe inelastic scattering cross section. In order to verify the difference of cross-section and the shielding computing ability between the CENDL-3.2 Library and ENDF/B-Ⅷ.0 Library, NJOY2016 program was used to compare the microscopic cross section of 56Fe after resonance reconstruction, such as inelastic scattering, total cross section, and the multi-group cross section library was also made. Three series of shielding benchmarks, ILL-Fe, OKTAVIAN-Fe and IPPE-Fe, are selected in the range of 56Fe inelastic scattering energy, and 56Fe is used as the main nuclide. The results show that the inelastic cross section of CENDL-3.2 Library is lower than that of ENDF/B-Ⅷ.0 Library in the range of 4MeV~12MeV. The multi-group cross-section benchmark verification showed that the calculated results of CENDL-3.2 Library are in good agreement with the experimental values. For OKTAVIAN-Fe benchmark, the results of the two Libraries agree well in the range of 0.1MeV~1MeV. In addition, the same phenomenon is found in all the benchmark tests, that is, in the energy range of 1MeV~10MeV, where the 56Fe inelastic cross section is the main contribution, the results of CENDL-3.2 Library are higher than those of ENDF/B-Ⅷ.0 Library.

     

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