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論文

中性子ラジオグラフィによるダイナミックCTシステムの開発と燃料電池スタック内水分布の連続三次元可視化

村川 英樹*; 橋本 迪矩*; 杉本 勝美*; 浅野 等*; 竹中 信幸*; 持木 幸一*; 安田 良

日本機械学会論文集,B, 77(784), p.2255 - 2262, 2011/12

A dynamic CT system was developed for visualization of consecutive three-dimensional water behavior in a PEFC stack for neutron radiography. The system is composed of a neutron image intensifier and a C-MOS high speed videocamera. An operating stack with three cells based on the Japan Automobile Research Institute standard was visualized using the neutron radiography system at a research reactor JRR-3 in Japan Atomic Energy Agency. The dynamic water behavior in channels in the operating PEFC stack was clearly visualized every 15 seconds by using the system. The water amount in each cell was evaluated by the CT reconstructed images. It was shown that a cell voltage decreased gradually when the water increased and increased rapidly when the water was evacuated. It was estimated that the power generation stopped when the channel of a cell was partly filled with the water because the air supply was blocked to a cell in the stack.

論文

Visualization of dynamic 3-D water behavior in polymer electrolyte fuel cell by using neutron image intensifier

竹中 信幸*; 浅野 等*; 杉本 勝美*; 村川 英樹*; 橋本 迪矩*; 進藤 徳高*; 持木 幸一*; 安田 良

Nuclear Instruments and Methods in Physics Research A, 651(1), p.277 - 281, 2011/09

 被引用回数:5 パーセンタイル:38.65(Instruments & Instrumentation)

Visualization of dynamic three-dimensional water behavior in a polymer electrolyte fuel cell (PEFC) stack was carried out by neutron CT using a neutron image intensifier. The neutron radiography system at JRR-3 in Japan Atomic Energy Agency was used. An operating stack with three cells based on Japan Automobile Research Institute standard was visualized. A consecutive CT reconstruction method by rotating the fuel stack continuously was developed using a neutron image intensifier and a C-MOS high speed video camera. The dynamic water behavior in channels in the operating PEFC stack was clearly visualized in 15 s intervals by the present dynamic neutron CT system.

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