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Journal Articles

Analysis of fuel assemblies inclination due to upper core support plate deflection for reactivity evaluation

Yoshimura, Kazuo; Doda, Norihiro; Igawa, Kenichi*; Uwaba, Tomoyuki; Tanaka, Masaaki; Nemoto, Toshiyuki*

Transactions of the 27th International Conference on Structural Mechanics in Reactor Technology (SMiRT 27) (Internet), 8 Pages, 2024/03

To investigate possibility of the insertion of the reactivity by the deflection of the upper core support plate, structural mechanics analyses of the domain consisting of the fuel assemblies and core support plates and evaluation of the reactivity due to the inclination of the fuel assemblies in EBR-II were carried out. As a result, it was indicated that the upper core support plate deflected downward larger at the low flowrate condition than that at the high flowrate condition and positive reactivity was inserted due to the inclination of the fuel assemblies at the low flowrate condition.

Journal Articles

Design study of an armor tile handling manipulator for the Fusion Experimental Reactor

Shibanuma, Kiyoshi; *; *; Munakata, Tadashi*; *; *; *; *

Fusion Engineering and Design, 18, p.487 - 493, 1991/00

 Times Cited Count:3 Percentile:40.77(Nuclear Science & Technology)

no abstracts in English

JAEA Reports

Fundamental Tests of High Temperature Wedable Strain Gago

JAERI-M 8590, 14 Pages, 1979/12

JAERI-M-8590.pdf:0.56MB

no abstracts in English

Oral presentation

Structural mechanics analysis of core support plate deflection for improvement of core deformation reactivity evaluation accuracy

Yoshimura, Kazuo; Doda, Norihiro; Igawa, Kenichi*; Uwaba, Tomoyuki; Tanaka, Masaaki; Nemoto, Toshiyuki*

no journal, , 

A sodium-cooled fast reactor has an inherent safety feature of feedback reactivity. Core deformation reactivity decreases fission power automatically in case of increase of the reactor power due to the negative reactivity according to raise of the core temperature. To improve the evaluation accuracy of the core deformation reactivity, deflection of the core support plate which varies the inclination of fuel assemblies and the pitches among them at the center height of the core and has impact on the reactivity was investigated quantitatively in the high flowrate and low flowrate conditions separately by structural mechanics analyses.

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