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Neutron Dosimetry Overview for WWERs

机译:WWER的中子剂量学概述

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摘要

Neutron dosimetry is a mandatory part of the monitoring of irradiation conditions within the reactor pressure vessels (RPVs) of all type of reactors, including water-water energetic reactors (WWERs). The main experimental part is connected with the surveillance specimen programs because the determination of neutron fluence in each of the surveillance specimens is required for the evaluation of radiation damage in RPV materials. Ex-vessel (cavity) neutron dosimetry is practically mandatory for all WWERs because it serves as the basis for fitting results from calculations of neutron fluence in the RPV wall. In addition, retrospective neutron dosimetry in WWER RPVs is supported by a high content (approximately 1 wt.%) of niobium in the upper layer of the austenitic cladding on the inner RPV surface. This paper describes the main principles of experimental neutron dosimetry in WWER RPVs and some specific results for different types of their units and different surveillance specimen programs. Some discussion is also held regarding different approaches for neutron fluence determination, i.e., for a differential threshold energy equal to 0.5 MeV in WWER studies.
机译:中子剂量学是监测所有类型反应堆(包括水-水高能反应堆(WWER))的反应堆压力容器(RPV)内辐照条件的强制性部分。主要的实验部分与监视标本程序相关,因为需要评估每个监视标本中的中子注量才能评估RPV材料中的辐射损伤。容器(腔)中子剂量学对于所有WWER实际上都是强制性的,因为它是RPV壁中子注量计算的拟合结果的基础。另外,WWER RPV中的回顾性中子剂量测定法由RPV内表面上奥氏体熔覆层上层中的高含量铌(约1 wt。%)支持。本文介绍了WWER RPV中实验中子剂量的主要原理,以及不同类型的单位和不同的监测标本程序的一些具体结果。还就中子注量确定的不同方法进行了讨论,即在WWER研究中确定等于0.5 MeV的差分阈值能量。

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