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Volume 9: Decontamination and Decommissioning, Radiation Protection, and Waste Management最新文献

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Research and Practice on Environmental Dose Reduction in Nuclear Power Plant Core Instrument Room 核电站堆芯仪表室环境降剂量的研究与实践
Long Tang, Binghan Gao, Long Yu, Dongdong Zhao, Feihua Luo
Qinshan Phase II Units 3 and 4 began to use the solvent cleaning technology for flux thimble tubes in 2017. In 2018, the environmental dose of the core instrument room increased significantly, resulting in higher radiation protection costs in the core instrument room during the overhaul and absorption dose of equipment maintenance person, etc. After the abnormality of the environmental dose of the core instrumentation room was found, the investigation into the reasons for the increase of the ambient dose in the core instrumentation room of Unit 3 found that because the room was only designed with an air inlet and no air outlet, a large amount of radioactive dust escaped from the room. The neutron flux detector was rusted for the first time and the material analysis of the radioactive dust found the activation products Fe-59 and Co-60. Aiming at this problem that has never occurred in the field of nuclear power, this paper firstly analyzes and studies the reasons for the increase of the environmental dose in the core instrument room. On this basis, the four environmental dose reduction measures adopted are described, including the improvement of the cleaning method of the flux thimble tubes, the decontamination of the equipment surface, the overall cleaning of the mechanical equipment, and all-round cleaning of room radioactive dust. From the practical results, the ambient dose in the core instrument room was reduced from nearly 1mSv/h to about 0.1mSv/h, and the room surface pollution and equipment radiation hot spots were almost eliminated.
秦山二期3、4号机组于2017年开始采用溶剂清洗技术对焊剂顶针管进行清洗。2018年,核心仪器室环境剂量明显增加,导致核心仪器室检修期间辐射防护费用增加,设备维修人员吸收剂量增加等。在发现堆芯仪器室环境剂量异常后,对3号机组堆芯仪器室环境剂量增加原因的调查发现,由于该室只设计了进风口,没有出风口,导致大量放射性粉尘从室内逸出。中子通量探测器首次生锈,放射性粉尘的物质分析发现了活化产物Fe-59和Co-60。针对这一核电领域从未出现过的问题,本文首先对核心仪器室环境剂量增加的原因进行了分析研究。在此基础上,阐述了采用的四项环境降剂量措施,包括改进助焊剂顶针管清洗方法、设备表面去污、机械设备整体清洗、房间放射性粉尘全方位清洗。从实际效果看,核心仪器室环境剂量由近1mSv/h降至约0.1mSv/h,基本消除了室内表面污染和设备辐射热点。
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Volume 9: Decontamination and Decommissioning, Radiation Protection, and Waste Management
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