Calculation of the high-level waste maximum activity of the Chornobyl NPP operating origin during storage in KTZV-0.2 containers

IF 0.4 Q4 PHYSICS, NUCLEAR
V. V. Derengovskyi, S. V. Kupriianchuk, D. O. Khomenko, D. Fedorchenko
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引用次数: 0

Abstract

This paper decrypts the conceptual design of the cask’s control radiation system of high-level waste (HLW). This system is intended for the solid radioactive waste processing plant at Chornobyl NPP and is capable of forming a passport for a batch of HLW, based on the measured surface dose rate (DR) for KTZV-0.2 protective container. DR for primary packaging and KTZV-02 container were calculated using Monte Carlo simulation code MCNP 6.2. The typical material compositions of the Chornobyl NPP radioactive waste, contaminated by 137Cs and 60Co, were considered, and the corresponding surface DR was calculated. The simulation results were used for the development of the HLW cask load criterion for the radiation loading control system. The paper shows that HLW load criterion could be safely increased from 80 to 280 mSv/h.
计算切尔诺贝利核电站运行源在KTZV-0.2容器贮存期间的高放废物最大活度
本文对高放废物储罐控制辐射系统的概念设计进行了解密。该系统用于切尔诺贝利核电站的固体放射性废物处理厂,并能够根据KTZV-0.2防护容器的测量表面剂量率(DR)形成一批高放射性废物的通行证。采用蒙特卡罗模拟程序MCNP 6.2计算了初级包装和KTZV-02容器的DR。考虑了137Cs和60Co污染的切尔诺贝利核电厂放射性废物的典型物质组成,并计算了相应的表面DR。仿真结果用于制定辐射加载控制系统的高通量桶加载准则。结果表明,高负荷标准可从80毫西弗/小时安全提高到280毫西弗/小时。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
10
审稿时长
19 weeks
期刊介绍: The journal Nuclear Physics and Atomic Energy presents the publications on Nuclear Physics, Atomic Energy, Radiation Physics, Radioecology, Engineering and Methods of Experiment. The journal includes peer-reviewed articles which are completed works containing new results of theoretical and experimental researches and are of interest for the scientists, postgraduate students, engineers and for the senior students.
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