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The role of pressure vessel embrittlement in the long term operation of nuclear power plants

机译:压力容器脆化在核电站长期运行中的作用

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摘要

The lack of new build of plants over the last twenty years has resulted in a switch within the industry from design, construction and development of new systems to the strengthening of safety systems and to the life extension, or long term operation (LTO), of existing reactors. The most relevant component of any nuclear power plan (NPP) is the reactor pressure vessel (RPV). This is because currently the RPV is still considered irreplaceable or prohibitively expensive to replace. This means, that if it degrades sufficiently, it could be the operational life limiting feature of the NPP. A RPV operational life of 60 years is being considered frequently by many utilities in their plant life management programmes. Areas of improvement facing long term operation are the reduction of uncertainties in the embrittlement parameters of irradiated vessels, and the development of embrittlement trend curves at high fluence levels, where surveillance data are scarce. Different techniques can be used to upgrade the surveillance programmes, as the use of miniature or reconstituted specimens and the application of best estimate assessment tools (e.g. Master Curve). Several relevant international research projects are on-going or have been proposed to clarify the material condition of long operated vessels. Knowledge management is a complementary tool, but not for it less important. The general context for LTO of RPVs is presented in this paper. Starting with a review of relevant embrittlement issues still open, followed by presenting the different techniques and tools that can be used to support LTO, and summarising the scopes of relevant European and American projects and activities in this research area. Finally, the European approach to knowledge preservation and consolidation is presented.
机译:在过去的二十年中,由于缺乏新的工厂建设,导致行业内从新系统的设计,建造和开发转向安全系统的加强以及寿命的延长或长期运行(LTO)。现有反应堆。任何核电计划(NPP)中最相关的组成部分是反应堆压力容器(RPV)。这是因为当前RPV仍然被认为是不可替代的,或者替换成本过高。这意味着,如果它充分降级,则可能是NPP的使用寿命限制特征。许多公用事业公司在其工厂寿命管理计划中经常考虑RPV的使用寿命为60年。长期运行面临的改进领域是减少辐照容器的脆化参数的不确定性,以及在缺乏监测数据的高通量水平下形成脆化趋势曲线。可以使用不同的技术来升级监视程序,例如使用微型或重构样本以及应用最佳估计评估工具(例如,Master Curve)。一些有关的国际研究项目正在进行或已经提出,以阐明长期使用的船舶的物质条件。知识管理是一种补充工具,但并非没有那么重要。本文介绍了RPV的LTO的一般情况。首先,对尚待解决的相关脆性问题进行审查,然后介绍可用于支持LTO的不同技术和工具,并概述该研究领域中相关的欧美项目和活动的范围。最后,介绍了欧洲保存和巩固知识的方法。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2012年第2期|p.63-68|共6页
  • 作者单位

    Joint Research Centre of the European Commission, Institute for Energy and Transport, Postbus 2, NL 1755 ZC, Petten, The Netherlands;

    Joint Research Centre of the European Commission, Institute for Energy and Transport, Postbus 2, NL 1755 ZC, Petten, The Netherlands;

    Joint Research Centre of the European Commission, Institute for Energy and Transport, Postbus 2, NL 1755 ZC, Petten, The Netherlands;

    Joint Research Centre of the European Commission, Institute for Energy and Transport, Postbus 2, NL 1755 ZC, Petten, The Netherlands;

    Joint Research Centre of the European Commission, Institute for Energy and Transport, Postbus 2, NL 1755 ZC, Petten, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    long term operation; life extension; reactor pressure vessel; radiation embrittlement;

    机译:长期运作;延长寿命反应堆压力容器;辐射脆化;

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