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Implementation of resonance upscattering treatment in FRENDY nuclear data processing system

核データ処理コードFRENDYへの共鳴上方散乱取り扱い機能の実装

山本 章夫*; 遠藤 知弘*; 千葉 豪*; 多田 健一   

Yamamoto, Akio*; Endo, Tomohiro*; Chiba, Go*; Tada, Kenichi

核データ処理コードFRENDYの多群断面積生成機能に、共鳴上方散乱効果を組み込んだ。共鳴上方散乱効果は、超詳細群スペクトルの変化による自己遮蔽因子の変化と、弾性散乱断面積の変化により考慮される。検証計算では、超詳細群スペクトル、実効断面積、ドップラー効果への影響を確認した。また、エネルギー群構造や、共鳴上方散乱の取り扱いが、実効断面積と弾性散乱行列の変化を通じてドップラー効果に及ぼす影響について調査した。これらの検討の結果、FRENDYで共鳴上方散乱を考慮した多群断面積を適切に生成できることが分かった。

The resonance upscattering effect (the thermal agitation effect) is incorporated in the generation capability of multi-group neutron cross sections of the FRENDY nuclear data processing system. The resonance upscattering effect is considered by (1) the variation of self-shielding factors (effective cross sections) due to the change in ultra-fine group spectrum and (2) the variation of group-to-group elastic scattering cross sections. In the verification calculations, impacts on the ultra-fine group spectrum, effective cross sections, and neutronics characteristics (the Doppler effect) are confirmed. The effect of energy group structure and the treatments of resonance upscattering on the Doppler effect through the variation of effective cross sections and the elastic scattering matrix are studied. The results indicate that the FRENDY can provide appropriate multi-group cross sections considering the resonance upscattering effect.

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パーセンタイル:31.61

分野:Nuclear Science & Technology

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