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SENSITIVITY STUDIES FOR AN IN-SITU PARTIAL DEFECT DETECTOR (PDET) IN SPENT FUEL USING MONTE CARLO TECHNIQUES

机译:蒙特卡罗技术对燃油中原位局部缺陷检测器(PDET)的敏感性研究

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This study presents results from Monte Carlo radiation transport calculations aimed at characterizing a novel methodology being developed to detect partial defects in Pressurized Water Reactor (PWR) spent fuel assemblies (SFAs). The methodology uses a combination of measured neutron and gamma fields inside a spent fuel assembly in an in-situ condition where no movement of the fuel assembly is required. Previous studies performed on single isolated assemblies resulted in a unique base signature that would change when some of the fuel in the assembly is replaced with dummy fuel. These studies indicate that this signature is still valid in the in-situ condition enhancing the prospect of building a practical tool, Partial Defect Detector (PDET), which can be used in the field for partial defect detection.
机译:这项研究提出了来自蒙特卡洛辐射传输计算的结果,旨在表征一种正在开发的新颖方法,以检测压水堆(PWR)乏燃料组件(SFA)中的部分缺陷。该方法在原位条件下使用了乏燃料组件内部测得的中子场和伽马场的组合,不需要燃料组件的移动。以前对单个隔离的组件进行的研究得出了独特的基本特征,当组件中的某些燃料替换为假燃料时,该特征会发生变化。这些研究表明,该签名在原位条件下仍然有效,从而增强了构建实用工具部分缺陷检测器(PDET)的前景,该工具可在现场用于部分缺陷检测。

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