Use of Control Room Simulators for Training of Nuclear Power Plant Personnel


Book Description

In cases where a "replica" plant-referenced full scope simulator is not available, it may be necessary for operators to receive their training with a computer simulation or to travel to another plant that has a simulator. This publication provides information and guidance on various aspects of the use of control room simulators.




Development, Use and Maintenance of Nuclear Power Plant Simulators for the Training and Authorization of Personnel


Book Description

The use of simulators for the training and qualification of nuclear power plant (NPP) control room operating personnel has become a standard practice throughout the world to develop and reinforce knowledge of plant systems and their relationships. It is an approach to increase the ability to apply plant procedures, to advance practical skills in operating the plant in normal, abnormal and emergency conditions, and to build supervisory skills and teamwork. Simulators are also utilized to conduct the authorization or licensing examinations of control room operating personnel, and there is an increasing trend in the use of simulators for non-training purposes. This publication provides Member States with comprehensive guidance on NPP operator training and describes the use of simulators in training and qualification programmes for the personnel. Current trends in the use of simulators in training programmes, as well as approaches to maintaining and upgrading simulators, are also presented.




Development of Instructors for Nuclear Power Plant Personnel Training


Book Description

The quality of nuclear power plant personnel training is dependent upon the availability of competent instructors. This book is a follow-up to Technical Reports Series No. 380, Nuclear Power Plant Personnel Training and its Evaluation, A Guidebook, and provides further details concerning the development of instructors for NPP personnel training.




NUREG/CR.


Book Description




Simulator-based Human Factors Studies Across 25 Years


Book Description

The Halden Man-Machine Laboratory (HAMMLAB) has been at the heart of human factors research at the OECD Halden Reactor Project (HRP). The HRP is sponsored by a group of national organizations, representing nuclear power plant regulators, utilities, and research institutions. The HRP is hosted by the Institute for Energy Technology (IFE) in Halden, Norway. HAMMLAB comprises three full-scale nuclear power plant control room research simulators. The simulator studies performed in HAMMLAB have traditionally been experimental in nature. In a simulator it is possible to study events as they unfold in real time, in a highly realistic operational environment under partially controlled conditions. This means that a wide range of human factors issues, which would be impossible or highly impracticable to study in real-life settings, can thus be addressed in HAMMLAB. Simulator-based Human Factors Studies Across 25 Years celebrates the twenty-fifth anniversary of HAMMLAB by reviewing the human factors studies performed in HAMMLAB across this time-span. A range of human factors issues have been addressed, including: • human-system interfaces; • alarm systems; • computerized procedures; • human-automation interaction; • staffing, teamwork and human reliability. The aim of HAMMLAB studies has always been the same: to generate knowledge for solving current and future challenges in nuclear power plant operation to contribute to safety. The outcomes of HAMMLAB studies have been used to support design and assessment of nuclear power plant control rooms.




Nuclear Education and Training


Book Description

The OECD Nuclear Energy Agency (NEA) first published in 2000 Nuclear Education and Training: Cause for Concern?, which highlighted significant issues in the availability of human resources for the nuclear industry. Ten years on, Nuclear Education and Training: From Concern to Capability considers what has changed in that time and finds that, while some countries have taken positive actions, in a number of others human resources could soon be facing serious challenges in coping with existing and potential new nuclear facilities. This is exacerbated by the increasing rate of retirement as the workforce ages. This report provides a qualitative characterisation of human resource needs and appraises instruments and programmes in nuclear education and training initiated by various stakeholders in different countries. In this context, it also examines the current and future uses of nuclear research facilities for education and training purposes. Regarding the nuclear training component of workforce competence, it outlines a job taxonomy which could be a basis for addressing the needs of workers across this sector. It presents the taxonomy as a way of enhancing mutual recognition and increasing consistency of education and training for both developed and developing countries.







Modeling and Simulation of Thermal Power Plants with ThermoSysPro


Book Description

This book explains the modelling and simulation of thermal power plants, and introduces readers to the equations needed to model a wide range of industrial energy processes. Also featuring a wealth of illustrative, real-world examples, it covers all types of power plants, including nuclear, fossil-fuel, solar and biomass. The book is based on the authors’ expertise and experience in the theory of power plant modelling and simulation, developed over many years of service with EDF. In more than forty examples, they demonstrate the component elements involved in a broad range of energy production systems, with detailed test cases for each chemical, thermodynamic and thermo-hydraulic model. Each of the test cases includes the following information: • component description and parameterization data; • modelling hypotheses and simulation results; • fundamental equations and correlations, with their validity domains; • model validation, and in some cases, experimental validation; and • single-phase flow and two-phase flow modelling equations, which cover all water and steam phases. A practical volume that is intended for a broad readership, from students and researchers, to professional engineers, this book offers the ideal handbook for the modelling and simulation of thermal power plants. It is also a valuable aid in understanding the physical and chemical phenomena that govern the operation of power plants and energy processes.