首页> 外文会议>ASME international conference on environmental remediation and radioactive waste management >OPPORTUNITIES AND CHALLENGES FOR STRUCTURAL HEALTH MONITORING OF RADIOACTIVE WASTE SYSTEMS AND STRUCTURES
【24h】

OPPORTUNITIES AND CHALLENGES FOR STRUCTURAL HEALTH MONITORING OF RADIOACTIVE WASTE SYSTEMS AND STRUCTURES

机译:放射性废物系统和结构的结构健康监测的机遇与挑战

获取原文

摘要

Radioactive waste systems and structures (RWSS) are safety-critical facilities in need of monitoring over prolonged periods of time. Structural health monitoring (SHM) is an emerging technology that aims at monitoring the state of a structure through the use of networks of permanently mounted sensors. SHM technologies have been developed primarily within the aerospace and civil engineering communities. This paper addresses the issue of transitioning the SHM concept to the monitoring of RWSS and evaluates the opportunities and challenges associated with this process. Guided wave SHM technologies utilizing structurally-mounted piezoelectric wafer active sensors (PWAS) have a wide range of applications based on both propagating-wave and standing-wave methodologies. Hence, opportunities exist for transitioning these SHM technologies into RWSS monitoring. However, there exist certain special operational conditions specific to RWSS such as: radiation field, caustic environments, marine environments, and chemical, mechanical and thermal stressors. In order to address the high discharge of used nuclear fuel (UNF) and the limited space in the storage pools the U.S. the Department of Energy (DOE) has adopted a "Strategy for the Management and Disposal of Used Nuclear Fuel and High-Level Radioactive Waste" (January 2013). This strategy endorses the key principles that underpin the Blue Ribbon Commission's on America's Nuclear Future recommendations to develop a sustainable program for deploying an integrated system capable of transporting, storing, and disposing of UNF and high-level radioactive waste from civilian nuclear power generation, defense, national security, and other activities. This will require research to develop monitoring, diagnosis, and prognosis tools that can aid to establish a strong technical basis for extended storage and transportation of UNF. Monitoring of such structures is critical for assuring the safety and security of the nation's spent nuclear fuel until a national policy for closure of the nuclear fuel cycle is defined and implemented. In addition, such tools can provide invaluable and timely information for verification of the predicted mechanical performance of RWSS (e.g. concrete or steel barriers) during off-normal occurrence and accident events such as the tsunami and earthquake event that affected Fukushima Daiichi nuclear power plant. The ability to verify the conditions, health, and degradation behavior of RWSS over time by applying nondestructive testing (NDT) as well as development of nondestructive evaluation (NDE) tools for new degradation processes will become challenging. The paper discusses some of the challenges associated to verification and diagnosis for RWSS and identifies SHM technologies which are more readily available for transitioning into RWSS applications. Fundamental research objectives that should be considered for the transition of SHM technologies (e.g., radiation hardened piezoelectric materials) for RWSS applications are discussed. The paper ends with summary, conclusions, and suggestions for further work.
机译:放射性废物系统和结构(RWSS)是对安全至关重要的设施,需要长期监控。结构健康监控(SHM)是一项新兴技术,旨在通过使用永久安装的传感器网络来监控结构的状态。 SHM技术主要是在航空航天和土木工程领域内开发的。本文讨论了将SHM概念过渡到RWSS监视的问题,并评估了与此过程相关的机遇和挑战。基于传播波和驻波方法,利用结构安装的压电晶片有源传感器(PWAS)的导波SHM技术具有广泛的应用。因此,存在将这些SHM技术过渡到RWSS监视的机会。但是,存在一些特定于RWSS的特殊操作条件,例如:辐射场,苛性环境,海洋环境以及化学,机械和热应力源。为了解决废旧核燃料(UNF)的高排放和存储池中有限的空间,美国能源部(DOE)通过了“废旧核燃料和高放射性放射性物质的管理和处置策略”。废物”(2013年1月)。该战略认可了蓝带委员会关于美国核未来建议的关键原则,该建议旨在制定一项可持续计划,以部署能够运输,存储和处置联合国基金会和民用核能发电,国防产生的高放射性废物的综合系统,国家安全等活动。这将需要进行研究,以开发监测,诊断和预后工具,以帮助为扩展联合国基金会的储存和运输奠定坚实的技术基础。此类结构的监视对于确保国家废核燃料的安全性至关重要,直到定义并实施了关闭核燃料循环的国家政策为止。此外,此类工具可以为核实RWSS(例如混凝土或钢制障碍物)在异常事件和事故事件(例如影响福岛第一核电站的海啸和地震事件)中的预测机械性能提供宝贵的及时信息。通过应用无损检测(NDT)以及为新的降解过程开发无损评估(NDE)工具来验证RWSS随时间推移的状况,健康和降解行为的能力将变得具有挑战性。本文讨论了与RWSS的验证和诊断相关的一些挑战,并确定了更容易用于过渡到RWSS应用程序的SHM技术。讨论了用于RWSS应用的SHM技术(例如辐射硬化压电材料)的过渡应考虑的基本研究目标。本文以总结,结论和进一步工作的建议作为结尾。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号