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New integral experiments for large angle scattering cross section data benchmarking with DT neutron beam at JAEA/FNS

原子力機構FNSのDT中性子ビームを用いた大角度散乱断面積ベンチマークのための新たな積分実験

大西 世紀*; 近藤 恵太郎*; 東 哲史*; 佐藤 聡; 落合 謙太郎; 高倉 耕祐; 村田 勲*; 今野 力

Onishi, Seiki*; Kondo, Keitaro*; Azuma, Tetsushi*; Sato, Satoshi; Ochiai, Kentaro; Takakura, Kosuke; Murata, Isao*; Konno, Chikara

散乱断面積データの検証のために、DT中性子ビームを用いた新たな積分実験を開始した。最初に、コリメーターでDT中性子ビームを構築し、その特性を調べた。次に、このDT中性子ビームを用いて、SUS316体系を用いた新しい積分実験を行った。体系内中心軸上及び中心軸から15cm, 30cm離れた点で$$^{93}$$Nb(n,2n)$$^{rm 92m}$$Nb反応の反応率を放射化箔法で測定し、モンテカルロコードMCNP及び核データライブラリJENDL-4.0, JENDL-3.3, ENDF/B-VI.8を用いた計算との比較を行った。実験値に対する計算値の比はどの核データを用いても中心軸から離れるにつれて1より小さくなった。0度よりも大きな角度に散乱する断面積に問題がある可能性を指摘した。

A new integral experiment with a deuteron-triton fusion (DT) neutron beam started in order to validate scattering cross section data. First the DT neutron beam was constructed with a collimator. The characteristics of the DT neutron beam were examined experimentally. Second a new integral experiment for type 316 stainless steel (SS316) was carried out with this DT neutron beam. Reaction rates of the $$^{93}$$Nb(n,2n)$$^{rm 92m}$$Nb reaction on the center of the beam axis and at 15 cm and 30 cm apart from the axis in the assembly were measured with the activation foil method and were calculated with the Monte Carlo transport calculation code MCNP and nuclear data libraries, JENDL-4.0, JENDL-3.3 and ENDF/B-VI.8. The ratios of calculation to experiment became smaller than 1 with the distance from the beam axis for all the nuclear libraries. It was pointed out that the diagonally forward cross section data had some problems.

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パーセンタイル:43.25

分野:Nuclear Science & Technology

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