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Safety analysis of ITER failures and consequences during maintenance

机译:维护期间ITER故障和后果的安全性分析

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This study has been a first attempt at identifying potential worker overexposure situations during machine maintenance operations. The results indicate potential areas, or situations, where worker overexposure may be possible [A. Natalizio, T. Pinna, Safety analysis of failures and consequences during maintenance, ENEA Report, FUS-TN-SA-SE-R-170, June 2007, Frascati, Italy].rnThe key findings obtained are as follows. Firstly, we have found no machine maintenance operations where the risk of worker overexposure is considered significantly large that immediate design attention is needed.rnSecondly, the most significant risk of worker overexposure is due to airborne releases of radioactivity from cooling water pipes and tubes that may not have been fully drained and dried, when they are cut, or inadvertently opened, by workers (frequency of pipe-cutting activities could be significantly high).rnThirdly, the risk of overexposure from human error could also be significant. This varies from mistaking the machine sector, to mistaking the component to be maintained. This is analogous to working on a live electrical circuit, when it is believed to be dead (disconnected from the power source) because the worker has mistakenly selected the wrong circuit-a look-alike one. Similarly, consider the situation of a worker mistakenly preparing to work on a cooling water circuit that is still at pressure and temperature, instead of the one that has been drained and dried. The more look-alike situations there are in the facility, the greater the probability of committing this type of error.rnFourthly, when consideration is given to human error, we believe that the aggregation of different diagnostics in the same port enhances the probability of human error. At the moment, these risks cannot be quantified. The task of quantifying those risks in the future should be considered.rnFinally, the transport of activated in-vessel components, including components of plasma-heating and current-drive systems, in non-shielded casks, could carry with it a significant risk of worker overexposure. In the context of ALARA, this approach requires a specific study to justify its use.rnConcluding, it is important to note that by having identified the possibility of an overexposure situation does not mean that it is probable. The calculation of probability awaits further studies of this nature, when the design reaches a more detailed level.
机译:这项研究是确定机器维护操作过程中潜在的工人过度暴露情况的首次尝试。结果表明潜在的区域或情况,可能会使工人过度接触[A. Natalizio,T. Pinna,维护过程中的故障和后果的安全性分析,ENEA报告,FUS-TN-SA-SE-R-170,2007年6月,意大利弗拉斯卡蒂。]获得的主要发现如下。首先,我们发现没有机器维护操作会导致工人过度暴露的风险非常大,因此需要立即进行设计注意。第二,工人过度暴露的最重大风险是由于冷却水管和空气管的空气中放射性释放可能没有被工人切开或无意打开时完全排干并干燥(切管活动的频率可能很高)。第三,人为错误导致过度暴露的风险也很大。从错误地考虑机器部门到错误地对待要维护的组件,不一而足。这类似于在带电的电路上工作时,认为它已死机(与电源断开连接),因为工人错误地选择了错误的电路(看上去很像)。同样,考虑一下一个工人错误地准备在仍然处于压力和温度下的冷却水回路上工作的情况,而不是已经排干并干燥的情况。设施中的情况越相似,犯此类错误的可能性就越大。第四,考虑到人为错误,我们认为同一端口上不同诊断程序的聚集会增加人为错误的可能性。错误。目前,这些风险无法量化。最后,应该考虑在非屏蔽桶中运输活化的容器内组件,包括等离子加热和电流驱动系统的组件,这将带来很大的风险。工人过度接触。在ALARA的背景下,此方法需要进行专门的研究以证明其使用的合理性。rn最后,必须指出的是,通过识别过度暴露情况的可能性并不意味着它是可能的。当设计达到更详细的水平时,概率的计算有待进一步研究。

著录项

  • 来源
    《Fusion Engineering and Design》 |2009年第11期|1521-1524|共4页
  • 作者

    T. Pinna; A. Natalizio;

  • 作者单位

    ENEA-Frascati, Via E. Fermi 45,I-00044 Frascati. Rome, Italy;

    ENSAC Associates Ltd.,87 Markland Dr., Toronto, Ont. M9C 1N4, Canada;

  • 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

    safety analysis; maintenance; ORE; ITER;

    机译:安全分析;保养;矿石;国际热核实验堆;

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