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The Importance of Establishing and Maintaining Continuity of Knowledge During 21st Century Nuclear Fuel Cycle Activities

机译:在21世纪核燃料循环活动中建立和保持知识连续性的重要性。

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摘要

During this century, the entire nuclear fuel cycle will expand and become increasingly more global, taxing both the resources and capabilities of the International Atomic Energy Agency (IAEA) to maintain an effective Continuity of Knowledge (CoK) and its ability to provide timely detection of diversion. Uranium that currently is mined and milled in one country will be converted, enriched, and fabricated into fuel for reactors in an expanding set of new countries. This expansion will make it harder to guarantee that regional activities stay regional and that diversion detection is timely unless new and sustainable tools are developed to im prove inspector effectiveness. To deal with this emerging reality, the IAEA must increase its use of unattended monitoring and employ new tools and methods that enhance CoK during all phases of the fuel cycle. This approach will help provide useful information to aid in detecting undeclared activities and create opportunities for timely and appropriate responses to events well before they enter phases of greater concern (e.g., enrichment). The systems that maintain CoK of safeguarded assets rely on containment and surveillance (C/S) technologies. The 21st century fuel cycle will require increased use of these technologies and systems, plus greater implementation of unattended systems that can securely collect data when inspectors are not present. This paper will describe the aspects and some of the capabilities that will be needed to address the expanding global fuel cycle to ensure that verifiable CoK of fuel cycle materials and activities can be established, maintained, and sustained.
机译:在本世纪中,整个核燃料循环将扩大并变得越来越全球化,这将给国际原子能机构(IAEA)的资源和能力造成负担,以维持有效的知识连续性(CoK)及其及时发现核燃料的能力。导流。目前在一个国家/地区开采和开采的铀将被转化,浓缩并制成越来越多的新国家的反应堆燃料。这种扩展将使得难以保证区域活动保持区域性,并且很难及时发现转移情况,除非开发出新的,可持续的工具来提高检查员的效率。为了应对这一新兴现实,国际原子能机构必须增加对无人值守监测的使用,并采用新的工具和方法来增强燃料循环各个阶段的可考性。这种方法将有助于提供有用的信息,以帮助检测未申报的活动,并在事件进入更令人关注的阶段(例如,充实)之前,为及时,适当地响应事件创造机会。维护受保护资产的CoK的系统依赖于遏制和监视(C / S)技术。 21世纪的燃料循环将需要更多地使用这些技术和系统,以及更多地实施无人值守的系统,这些系统可以在没有检查员的情况下安全地收集数据。本文将介绍解决不断扩大的全球燃料循环以确保可建立,维持和维持的燃料循环材料和活动的可验证CoK的方面和一些功能。

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  • 来源
    《Journal of Nuclear Materials Management》 |2012年第4期|86-91|共6页
  • 作者单位

    Oak Ridge National Laboratory, Oak Ridge.Tennessee USA;

    Oak Ridge National Laboratory, Oak Ridge.Tennessee USA;

    Oak Ridge National Laboratory, Oak Ridge.Tennessee USA;

    National Nuclear Security Agency, Office of Nonproliferation and Verification Research and Development,Washington, DC USA;

    Sandia National Laboratories, Albuquerque, New Mexico USA;

    Savannah River National Laboratory, Aiken, South Carolina USA;

    Savannah River National Laboratory, Aiken, South Carolina USA;

    Milagro Consulting, Albuquerque, New Mexico USA;

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