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A Remote-operated System to Map Radiation Dose in the Fukushima Daiichi Primary Containment Vessel

机译:一种遥控系统,用于在Fukusima Daiichi主要容器容器中映射辐射剂量

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This paper describes the development of a submersible system based on a remote-operated vehicle coupled with radiation detectors to map the interior of the reactors at the Fukushima Daiichi nuclear power station. It has the aim oflocating fuel debris. The AVEXIS submersible vehicle used in this study has been designed as a low-cost, potentially disposable, inspection platform that is the smallest of its class and is capable of being deployed through a 150 mm diameter access pipe. To map the gamma-ray environment, a cerium bromide scintillator detector with a small form factor has been incorporated into the AVEXIS to identify radioactive isotopes via gamma-ray spectroscopy. This provides the combined system with the potential to map gamma-ray spectra and particle locations throughout submerged, contaminated facilities, such as Units 1, 2 and 3 of the Fukushima Daiichi nuclear power plant. The hypothesis of this research is to determine the sensitivity of the combined system in a submerged environment that replicates the combination of gamma radiation and water submersion but at lower dose rates.
机译:本文介绍了基于远程操作车辆的潜水系统的开发,耦合与辐射检测器,以在Fukusima Daiichi核电站映射反应器的内部。它具有燃料碎片的目标。本研究中使用的AVEXIS潜水式车辆被设计为低成本,潜在的一次性检查平台,这是其阶级中最小的并且能够展开150 mm直径的接入管道。为了映射伽马射线环境,溴化铈闪烁器检测器具有小形状因子,已掺入AVEXIS中,以通过γ射线光谱识别放射性同位素。这提供了具有在整个浸没的,受污染的设施的伽马射线光谱和粒子位置映射的组合系统,例如Fukusima Daiichi核电站的单元1,2和3。该研究的假设是测定组合系统在浸没环境中的敏感性,该潜水环境复制γ辐射和水浸渍的组合,但以较低剂量的速率。

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