首页> 外文会议>International conference on nuclear engineering >STATE OF ADVANCEMENT OF THE INTERNATIONAL REVE PROJECT: COMPUTATIONAL MODELLING OF IRRADIATION-INDUCED HARDENING IN REACTOR PRESSURE VESSEL STEELS AND RELEVANT EXPERIMENTAL VALIDATION PROGRAMME
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STATE OF ADVANCEMENT OF THE INTERNATIONAL REVE PROJECT: COMPUTATIONAL MODELLING OF IRRADIATION-INDUCED HARDENING IN REACTOR PRESSURE VESSEL STEELS AND RELEVANT EXPERIMENTAL VALIDATION PROGRAMME

机译:国际reve项目的进步状态:反应堆压力容器钢中辐照诱导硬化的计算建模及相关实验验证计划

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The REVE (REactor for Virtual Experiments) project is an international joint effort aimed at developing multiscale modelling computational toolboxes capable of simulating the behaviour of materials under irradiation at different time and length scales. Well grounded numerical techniques such as molecular dynamics (MD) and Monte Carlo (MC) algorithms, as well as rate equation (RE) and dislocation-defect interaction theory, form the basis on which the project is built. The goal is to put together a suite of integrated codes capable of deducing the changes in macroscopic properties starting from a detailed simulation of the microstructural changes produced by irradiation in materials. To achieve this objective, several European laboratories are closely collaborating, while exchanging data with American and Japanese laboratories currently pursuing similar approaches. The material chosen for the first phase of this project is reactor pressure vessel (RPV) steel, the target macrosocopic magnitude to be predicted being the yield strenght increase (Δσ_y) due, essentially, to irradiation-enhanced formation of intragranular solute atom precipitates or clouds, as well as irradiation induced defects in the matrix, such as point defect clusters and dislocation loops. A description of the methodological approach used in the project and its current state is given in the paper. The development of the simulation tools requires a continuous feedback from ad hoc experimental data. In the framework of the REVE project SCK-CEN has therefore performed a neutron irradiation campaign of model alloys of growing complexity (from pure Fe to binary and ternary systems and a real RPV steel) in the Belgian test reactor BR2 and is currently carrying on the subsequent materials characterisation using its hot cell facilities. The paper gives the details of this experimental programme - probably the first large-scale one devoted to the validation of numerical simulation tools - and presents and discusses the first available results, with a view to their use as feedback for the improvement of the computational modelling.
机译:Reve(虚拟实验的反应堆)项目是一个国际共同努力,旨在开发多尺度建模计算工具箱,该计算工具箱能够在不同时间和长度尺度的照射下模拟材料的行为。良好的接地数值技术,如分子动力学(MD)和蒙特卡罗(MC)算法,以及速率方程(RE)和错位缺陷交互理论,形成了项目的基础。目标是将能够在通过辐射中产生的微观结构变化的详细模拟开始的诸如宏观特性的变化的套件。为实现这一目标,几个欧洲实验室密切合作,同时与目前正在追求类似方法的美国和日本实验室的数据交换数据。选择用于此项目的第一阶段的材料是反应堆压力容器(RPV)钢,要被预测的目标macrosocopic幅值收率实力增加(Δσ_y)由于本质上,以晶内的溶质原子的析出物或云的照射增强形成,以及在基体照射引起的缺陷,如点缺陷簇和位错环。本文给出了项目中使用的方法方法的描述及其当前状态。仿真工具的开发需要从Ad Hoc实验数据的连续反馈。在REVE项目SCK-CEN的框架有因此进行日益复杂的模型合金的中子辐射运动(从纯Fe到二元和三元系统和一个真正的RPV钢)在比利时测试反应器BR2与目前正在进行的随后的材料表征利用其热室设施。本文提供了该实验计划的细节 - 可能是第一个致力于验证数值模拟工具的大型一个大规模 - 并提出并讨论了第一个可用的结果,以便将其用作改进计算建模的反馈。

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