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HLRW MANAGEMENT DURING MR REACTOR DECOMMISSIONING IN NRC 'KURCHATOV INSTITUTE'

机译:NRC'Kurchatov Institute初先生反应堆退役期间的HLRW管理

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A program of decommissioning of MR research reactor in the Kurchatov institute started in 2008. The decommissioning work presumed a preliminary stage, which included: removal of spent fuel from near reactor storage; removal of spent fuel assemble of metal liquid loop channel from a core; identification, sorting and disposal of radioactive objects from gateway of the reactor; identification, sorting and disposal of radioactive objects from cells of HLRW storage of the Kurchatov institute for radwaste creating form the decommissioning of MR. All these works were performed by a remote controlled means with use of a remote identification methods of high radioactive objects. A distribution of activity along high radiated objects was measured by a collimated radiometer installed on the robot Brokk-90, a gamma image of the object was registered by gammavisor. Spectrum of gamma radiation was measured by a gamma locator and semiconductor detector system. For identification of a presence of uranium isotopes in the HLRW a technique, based on the registration of characteristic radiation of U, was developed. For fragmentation of high radiated objects was used a cold cutting technique and dust suppression system was applied for reduction of volume activity of aerosols in air. The management of HLRW was performed by remote controlled robots Brokk-180 and Brokk-330. They executed sorting, cutting and parking of high radiated part of contaminated equipment. The use of these techniques allowed to reduce individual and collective doses of personal performed the decommissioning. The average individual dose of the personnel was 1,9 mSv/year in 2011, and the collective dose is estimated by 0,0605 man×Sv/year. Use of the remote control machines enables reducing the number of working personal (20 men) and doses. X-ray spectrometric methods enable determination of a presence of the U in high radiated objects and special cans and separation of them for further spent fuel inspection. The sorting of radwaste enabled shipping of the LLRW and ILRW to special repositories and keeping of the HLRW for decay in the Kurchatov institute repository.
机译:在2008年开始,Kurchatov Institute先生研究反应堆退役计划。退役工作推出了初步阶段,包括:从反应堆储存附近去除燃料;从芯中移除金属液环通道的燃料组装;来自反应器网关的放射性物体的识别,分类和处理;来自Kurchatov研究所的HLRW储存小区的识别,分类和处置放射性物体,为Radwaste创造了MR的退役。所有这些作品都是通过远程控制手段进行的,利用高放射性对象的远程识别方法进行。通过安装在机器人Brokk-90上的准直辐射计测量沿高辐射物体的活动分布,通过伽马波犬登记物体的伽马图像。通过伽马定位器和半导体检测器系统测量伽马辐射的光谱。为了鉴定HLRW在HLRW中的铀同位素存在的存在,基于U的特征辐射的登记。对于高辐射物体的破碎物,使用冷切割技术,施加粉尘抑制系统用于减少空气中气溶胶的体积活性。 HLRW的管理由远程控制机器人BROKK-180和BROKK-330进行。他们执行了对污染设备的高辐射部分的分拣,切割和停车。使用这些技术可减少个人和集体剂量的个人执行的退役。人员的平均单位剂量为2011年的1,9 msv /年,集体剂量估计为0,0605人×SV /年。使用遥控机器可以减少工人个人(20人)和剂量的数量。 X射线光谱方法能够在高辐射物体和特殊罐中确定U的存在,以及它们的分离以进一步花费燃料检查。 Radwaste的排序使LLRW和ILRW的运输到特殊的存储库,并在Kurchatov Institute Repository中保持HLRW进行衰减。

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