Accuracy of Analytical Treatments for Resonance Absorption in Doppler Resonance Regions
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概要
- 論文の詳細を見る
Resonance shielding factors based on the assumption of constant collision density have been compared with those obtained by solving rigorously the slowing down equation. The results obtained by calculating numerically the flux for this assumption have been thoroughly examined for several compositions and temperatures. This detailed investigation has been based on con-sideration of the interaction effects between neighboring resonances in both the same and different nuclear species. The results obtained have permitted determination of the limits of accuracy obtained with conventional analytical methods. The accuracy of two typical methods of approximation based on the above basic assumption has also been investigated for important Doppler resonance regions in large fast reactor.<BR>The study has covered the resonance regions below 21.5 keV for <SUP>238</SUP>U, and below 10 keV for <SUP>235</SUP>U and <SUP>239</SUP>Pu. It has been found that the results obtained numerically from the assumption of constant collision density are fairly good at higher energies, but the errors become large with decreasing neutron energy and the increasing concentration of fuel. Furthermore the shielding factor and the temperature coefficient of <SUP>239</SUP>Pu are affected considerably by superposition of the resonances of <SUP>238</SUP>U, and the errors are thereby accentuated by a factor of more than two. And the errors resulting from the analytical methods have been found larger than those incurred by the assumption of constant collision density.
- 一般社団法人 日本原子力学会の論文
著者
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TAKANO Hideki
Japan Atomic Energy Research Institute
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Nakagawa Masayuki
Japan Atomic Energy Research Institute
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KATSURAGI Satoru
Japan Atomic Energy Research Institute
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ISHIGURO Yukio
Japan Atomic Energy Research Institute
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