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論文

Radiation imaging using an integrated radiation imaging system based on a compact Compton camera under Unit 1/2 exhaust stack of Fukushima Daiichi Nuclear Power Station

佐藤 優樹; 寺阪 祐太

Journal of Nuclear Science and Technology, 59(6), p.677 - 687, 2022/06

 被引用回数:17 パーセンタイル:95.29(Nuclear Science & Technology)

The Fukushima Daiichi Nuclear Power Station (FDNPS) went into meltdown after being hit by a large tsunami caused by the Great East Japan Earthquake on March 11, 2011. Measuring and understanding the distribution of radioactive contamination inside the FDNPS is essential for decommissioning work, reducing exposure to workers, and ensuring decontamination. This paper reports the visualization tests of radioactive contamination in the Unit 1/2 exhaust stack of the FDNPS using a compact Compton camera. Fixed-point measurements were conducted using only a Compton camera and moving measurements using an integrated radiation imaging system (iRIS) that combines a Compton camera with a simultaneous localization and mapping device. For the moving measurements, an operator carrying the iRIS acquires data continuously while walking in a passage near the stack. With both types of measurements, high-intensity contamination was detected at the base of the stack, and detailed three-dimensional (3D) visualization of the contamination was obtained from the moving measurement. The fixed-point measurements estimated the source intensity of the contamination from the reconstructed contamination image acquired by the Compton camera. Furthermore, workers can experience the work environment before actual work by importing a 3D structure model into a virtual reality system displaying the contamination image.

論文

側壁が加熱・冷却される水平正方形流路内の複合対流熱伝達

坂元 美定*; 功刀 資彰; 一宮 浩市*

日本機械学会第7回計算力学講演会講演論文集, 0, p.436 - 437, 1994/00

比較的低いレイノルズ数域での層流複合対流下では、熱的境界条件の不均一性や浮力の影響が大きい場合に、流れが3次元的な挙動を示すことが予想される。特に、温度助走域での複合対流特有の複雑な伝熱流動状態を解明することが本研究の命題であり、これまでに等温水平管に関する熱流動機構の解明に成功した。本研究では、側壁温度が異なる水平正方形流路の複合対流熱伝達について大規模3次元数値解析を実施し、主流と浮力駆動2次流れの干渉により生じるスパイラル流れの発生と加熱開始点近傍に発現したはく離流れについて報告する。

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