首页> 外文期刊>Journal of nuclear science and technology >Evaluation Methods For Corrosion Damage Of Componentsin Cooling Systems Of Nuclear Power Plantsrnby Coupling Analysis Of Corrosion And Flow Dynamics (i)rnmajor Targets And Development Strategies Of The Evaluation Methods
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Evaluation Methods For Corrosion Damage Of Componentsin Cooling Systems Of Nuclear Power Plantsrnby Coupling Analysis Of Corrosion And Flow Dynamics (i)rnmajor Targets And Development Strategies Of The Evaluation Methods

机译:腐蚀与流动动力学耦合分析核电厂冷却系统各部件腐蚀损伤的评价方法(i)主要目标及评价方法的发展策略

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摘要

Problems in major components and structural materials in nuclear power plants have often been caused by flow induced vibration and corrosion and their overlapping effects. In order to establish safe and reliable plant operation, future problems for structural materials should be predicted based on combined analyses of flow dynamics and corrosion and they should be mitigated before becoming serious issues for plant operation. Three approaches have been prepared for predicting future problems in structural materials: 1. Computer program packages for predicting future corrosion fatigue on structural materials, 2. Computer program packages for predicting future corrosion damage on structural materials, and 3. Computer program packages for predicting wall thinning caused by flow accelerated corrosion. General features of evaluation methods and their computer packages, technical innovations required for their development, and application plans for the developed approaches for plant operation are introduced in this paper.
机译:核电站主要部件和结构材料中的问题通常是由流动引起的振动和腐蚀及其重叠效应引起的。为了建立安全可靠的工厂运行,应基于对流体动力学和腐蚀的综合分析来预测结构材料的未来问题,并在成为严重的工厂运行问题之前加以缓解。已经准备了三种方法来预测结构材料中的未来问题:1.用于预测结构材料上未来腐蚀疲劳的计算机程序包; 2.用于预测结构材料上未来腐蚀损坏的计算机程序包;以及3.用于预测墙的计算机程序包。流动加速腐蚀导致变薄。本文介绍了评估方法及其计算机程序包的一般功能,其开发所需的技术创新以及已开发的工厂运营方法的应用计划。

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