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WORK DOMAIN ANALYSIS AND OPERATIONAL CONCEPTS FOR ADVANCED NUCLEAR POWER PLANTS

机译:先进核电站的工作域分析和操作概念

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The nuclear industry is currently designing and building a new generation of reactors that will include different structural, functional, and environmental aspects, all of which are likely to have a significant impact on the way these plants are operated. In order to meet economic and safety objectives, these new reactors will all use advanced technologies to some extent, including new materials and advanced digital instrumentation and control systems. New technologies will affect not only operational strategies, but will also require a new approach to how functions are allocated to humans or machines to ensure optimal performance. Uncertainty about the effect of large scale changes in plant design will remain until sound technical bases are developed for new operational concepts and strategies. Up-to-date models and guidance are required for the development of operational concepts for complex socio-technical systems. This paper describes how the classical Work Domain Analysis method was adapted to develop operational concept frameworks for new plants. This adaptation of the method is better able to deal with the uncertainty and incomplete information typical of first-of-a-kind designs. Practical examples are provided of the systematic application of the method in the operational analysis of sodium-cooled reactors. Insights from this application and its utility are reviewed and arguments for the formal adoption of Work Domain Analysis as a value-added part of the Systems Engineering process are presented.
机译:核工业目前正在设计和建造新一代反应堆,其中将包括不同的结构,功能和环境方面,所有这些都可能对这些电厂的运行方式产生重大影响。为了达到经济和安全目标,这些新反应堆都将在一定程度上使用先进技术,包括新材料以及先进的数字仪表和控制系统。新技术不仅会影响运营策略,而且还需要一种新的方法来将功能分配给人或机器,以确保最佳性能。在为新的操作概念和策略开发可靠的技术基础之前,对工厂设计大规模变更的影响的不确定性将一直存在。开发复杂的社会技术系统的操作概念需要最新的模型和指南。本文介绍了如何将经典的“工作域分析”方法改编为新工厂的运营概念框架。该方法的这种适应性能够更好地处理首创设计中典型的不确定性和不完整信息。提供了该方法在钠冷反应堆运行分析中的系统应用的实际例子。对该应用程序及其实用程序的见解进行了回顾,并提出了将工作域分析作为系统工程过程的增值部分正式采用的论据。

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