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An overview of thermochemical modelling of CANDU fuel and applications to the nuclear industry

机译:CANDU燃料的热化学建模及其在核工业中的应用概述

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Thermodynamic models of complex chemical systems provide an elegant and cost effective means to predict chemical interactions of materials and to provide guidance to experimental research to minimise costs. Starting in 1995 at the Royal Military College of Canada, a thermodynamic treatment of irradiated nuclear fuel has been developed that not only describes the thermochemistry of the fuel at elevated temperatures during a potential Loss-of-Coolant Accident (LOCA), but it can also be used to help predict the oxidation environment for fresh fuel measurements, irradiated fuel behaviour, the aqueous chemistry of fuel debris in coolant, nuclear waste disposal, and other systems involving nuclear fuel. Furthermore, this treatment was supported by several experimental campaigns at the Canadian Nuclear Laboratories and the Institute of Transuranium Elements for validation purposes. This paper will trace the development of this treatment and-demonstrate its current practice and future potential in the general context of performance and safety of nuclear fuel. (C) 2016 Elsevier Ltd. All rights reserved.
机译:复杂化学系统的热力学模型为预测材料的化学相互作用提供了一种优雅且经济高效的方法,并为实验研究提供了指导,以最大限度地降低成本。从1995年在加拿大皇家军事学院开始,已开发出一种对辐照核燃料进行热力学处理的方法,该方法不仅可以描述燃料在潜在的冷却损失事故(LOCA)期间在升高的温度下的热化学性质,而且还可以可用于帮助预测新鲜燃料测量,辐照燃料行为,冷却剂中燃料残渣的水化学,核废料处置以及其他涉及核燃料的系统的氧化环境。此外,这种处理得到了加拿大核实验室和超铀元素研究所为验证目的而进行的几次实验的支持。本文将追踪这种处理方法的发展,并在核燃料的性能和安全性的总体背景下展示其当前的实践和未来的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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