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DESIGN AND OPERATION OF THE COMBINED TECHNOLOGY AUTOMATED WASTE CHARACTERISATION SYSTEM

机译:组合技术自动化废物特征系统的设计与运行

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This paper describes the design and operation of the Combined Technology Automated Waste Characterisation System (CTA-WCS) at JRC Ispra. The WCS was designed for the measurement of fission products and uranium and plutonium containing waste arising from nuclear fuel and nuclear materials processing and reactor operations. The WCS covers a range of activity including Low and Intermediate Level Waste (LLW and ILW). The system is designed to measure the waste in 200 and 400 (440) litre drums with a maximum drum weight of 1500 kg. Gamma-ray measurements of radio-nuclide content are performed by a gamma ray measurement station which functions as either a Segmented Gamma Scanner (SGS) or Tomographic Gamma Scanner (TGS). Either of these two techniques may be employed to perform the functions of drum screening, non-destructive examination (NDE) and, where appropriate, final drum assay. Coupled to the gamma ray station is a surface dose-rate measurement station, which employs 6-shielded Geiger-Muller detectors. Active and passive neutron measurements are performed by an advanced, graphite lined Differential Die-away (DDA) system, which comprises the neutron measurement station. The DDA performs conventional passive neutron totals and coincidence counting and active DDA total neutron counting. Data analysis is based on the use of a range of matrix calibrations, some determined by Monte Carlo analysis. Linking the gamma ray and neutron measurement stations is an automated roller conveyor with a 20 drum buffer capability and a weight measurement station. Drums are identified by bar code reading technology. Once loaded, the system performs automatic assay of up to 20 drums and then returns the drums to the buffer position on the conveyor. The WCS is now in routine operation. Results will be presented from the period of one year Pilot Operation during which the system was optimized and waste drums were measured.
机译:本文介绍了JRC ISPRA的组合技术自动化废物特征系统(CTA-WCS)的设计和操作。 WCS专为测量核燃料和核材料加工和反应堆操作而产生的裂变产物和铀和钚的钚。 WCS涵盖一系列活动,包括低和中级废物(LLW和ILW)。该系统旨在测量200和400(440)升的浪费,最大鼓重量为1500千克。无线电核素含量的γ射线测量由伽马射线测量站执行,该伽马射线测量站用作分段伽马扫描仪(SGS)或断层伽马扫描仪(TGS)。这两种技术中的任一种可以用于执行鼓筛选,非破坏性检查(NDE)的功能,并且在适当的情况下,最终鼓测定。耦合到伽马射线站是一种表面剂量速率测量站,其采用6屏蔽的盖革麦克风检测器。主动和无源中子测量由先进的石墨衬里差分芯片(DDA)系统进行,该系统包括中子测量站。 DDA执行传统的被动中子总量和重合计数和有源DDA总中子计数。数据分析基于一系列矩阵校准,有些由Monte Carlo分析确定。连接伽马射线和中子测量站是一种自动滚筒式输送机,具有20个鼓缓冲能力和重量测量站。鼓通过条形码阅读技术识别。一旦加载,系统就会执行多达20个滚筒的自动测定,然后将滚筒返回到输送机上的缓冲位置。 WCS现在处于常规操作。结果将从一年的试验操作期间提出,其中系统经过优化,测量了废滚筒。

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