Nuclear Power in the United States Joseph Naser Electric Power Research Institute IAEA Technical Working Group on Nuclear Power Plant Control and Instrumentation.

Slides:



Advertisements
Similar presentations
Strengthening National Metrology Institutes (NMIs) in the Hemisphere, an essential element in the development of National Quality Infrastructure (NQI)
Advertisements

IBM Corporate Environmental Affairs and Product Safety
INPO Update CMBG Meeting June 2013
Educate to Innovate A SusChem programme for building skills capacity for a sustainable European chemical sector Susan Fleet - Britest Limited Professor.
Tom Standish Group President & COO Regulated Operations CenterPoint Energy Visions of the Smart Grid: Deconstructing the traditional utility to build the.
Applications of Wireless Sensor Networks in Smart Grid Presented by Zhongming Zheng.
Cyber Security and the Smart Grid George W. Arnold, Eng.Sc.D. National Institute of Standards and Technology (NIST) U.S. Department of Commerce
All content in this presentation is protected – © 2008 American Power Conversion Corporation Rael Haiboullin System Engineer Change Manager.
Levetidsforlengelse av Existerende felt Oppgradering av kontrollsystemer subsea Erfaringer og losninger fra Tordis og Vigdis February 8 th 2012.
Nuclear Energy University Programs Small Modular Reactors August 10, 2011 Dan Ingersoll presented by Bob Hill.
INSAG DEVELOPMENT OF A DOCUMENT ON HIGH LEVEL SAFETY RECOMMENDATIONS FOR NUCLEAR POWER Milestone Issues: Group C. Nuclear Safety. A. Alonso (INSAG Member)
© Prentice Hall CHAPTER 9 Application Development by Information Systems Professionals.
1 U.S. LWR Sustainability Program Ronaldo Szilard Director, INL, Nuclear Science & Engineering Director, Technical Integration Office, LWR Sustainability.
Robust and affordable process control technologies for improving standards and optimising industrial operations Pau Puigdollers Project Coordinator.
2015 World Forum on Energy Regulation May 25, 2015
Challenges of a Harmonized Global Safety Regime Jacques Repussard Director General IRSN IAEA 2007 Scientific Forum.
ACTION PROPOSAL FOR FLYWHEEL ENERGY TECHNOLOGY Enhance future grid reliability, interoperability, & extreme event protection In 20 years, the flywheel.
New Nuclear Power Plants Need and Status ASQ-EED 31 st Energy & Environmental Division Conference September 12, 2004 Adrian Heymer, NEI
WORKSHOP ON TECHNOLOGY PATHWAYS FORWARD FOR CARBON CAPTURE & STORAGE ON NATURAL GAS POWER SYSTEMS April 22, 2014 Revis W. James Director, Generation R&D.
Opportunities to Participate in Center for Research & Technology Development (CRTD) Activities Presented at TCOB Meeting – March 1, 2012 Michael Tinkleman,
Office of Nuclear Energy U.S. Department of Energy
DI&C Project & Lead-Plant Experiences Gordon Clefton March 11, 2009.
U.S. DOE Light Water Reactor Sustainability Program: Advanced Instrumentation & Controls and Human System Interfaces Research Pathway Bruce Hallbert, Idaho.
Smart Buildings Srirangarajan Kadaba National Manager – Energy Edge Buildings Business Schneider Electric 21June 2010.
© New York Independent System Operator, Inc. All Rights Reserved. Michael Swider Manager – Research & Development New York Independent System.
FirstEnergy / Jersey Central Power & Light Integrated Distributed Energy Resources (IDER) Joseph Waligorski FirstEnergy Grid-InterOp 2009 Denver, CO November.
The Climate Prediction Project Global Climate Information for Regional Adaptation and Decision-Making in the 21 st Century.
Canada’s Labour Market Challenges A View from Canadian Industry.
DiFac Consortium 3rd INTUITION Workshop “VR/VE & Industry – Challenges and Opportunities” Schwabenlandhalle, Fellbach / Stuttgart, Germany 30th of November.
Sample Lending Corporation. How to decrease call processing time without compromising customer service.
Opting for “Long Term Operations” Technical, economic and regulatory considerations MARC Conference June 8, 2010 Sean Bushart, EPRI Sr. Program Manager.
2131 Structured System Analysis and Design By Germaine Cheung Hong Kong Computer Institute Lecture 2 (Chapter 2) Information System Building Blocks.
US Priorities for New and Renewable Energy Technologies Cary Bloyd Argonne National Laboratory APEC Expert Group on New and Renewable Energy Technologies.
AIAA’s Publications Business Publications New Initiatives Subcommittee Wednesday, 9 January 2008 Rodger Williams.
Technical Working Group on Nuclear Power Plant Instrumentation and Control Vienna, May 2009 NATIONAL REPORT ON NUCLEAR POWER PLANT INSTRUMENTATION AND.
Prepared By :.  Introduction  Techniques Used  Case Study  Advantages  Application  Conclusion OUTLINE.
European Broadband Portal Phase II Application of the Blueprint for “bottom-up” broadband initiatives.
08 October 2015 M. Ammar Mehdi Introduction to Human Resource Management & SSG-16 Actions 4 th Steering Committee on Competence of Human.
1 The U.S. NRC’s Reactor Certification and Licensing Process – Meeting the Challenge? Commissioner Peter B. Lyons U.S. Nuclear Regulatory Commission 15.
Opportunities and Challenges Joseph Naser Electric Power Research Institute IAEA Technical Working Group on Nuclear Power Plant Control and Instrumentation.
APEC ENERGY WORKING GROUP FRAMEWORK PROPOSAL FOR IMPLEMENTING ENERGY INVESTMENT RECOMMENDATIONS (November 2004).
1 ISEE Wants You! UofC Faculty of Engineering Planning Workshop May 9 & 10, 2005 Eddy Isaacs Managing Director, AERI and Interim CEO of EnergyINet Government.
Landstar Application Case Study: Development Of Content-rich Solutions For The Mobile Employee Bob Leo Director of Professional Services October 15, 2000.
Advanced Controls and Sensors David G. Hansen. Advanced Controls and Sensors Planning Process.
Main Requirements on Different Stages of the Licensing Process for New Nuclear Facilities Module 4.5/1 Design Geoff Vaughan University of Central Lancashire,
Catawba County Board of Commissioners Retreat June 11, 2007 It is a great time to be an innovator 2007 Technology Strategic Plan *
Networked Embedded and Control Systems WP ICT Call 2 Objective ICT ICT National Contact Points Mercè Griera i Fisa Brussels, 23 May 2007.
Milestones or Millstones Alex R. Burkart, Deputy Director Office of Nuclear Energy, Safety and Security United States Department of State.
Life cycle services for automation products
1 IMPLEMENTATION STRATEGY for the 2008 SNA OECD National Accounts Working Party Paris, France 4 to 6 November 2009 Herman Smith UNSD.
Frankfurt (Germany), 6-9 June 2011 SmartLife Guillaume & SmartLife Core Group – France – S1 – Paper SmartLife initiative in Focus.
Center for Advanced Energy Studies Harold S. Blackman Interim Director, CAES July 18, 2007.
1 EMS Fundamentals An Introduction to the EMS Process Roadmap AASHTO EMS Workshop.
International Atomic Energy Agency Roles and responsibilities for development of disposal facilities Phil Metcalf Workshop on Strategy and Methodologies.
Role of Technical Agencies Responsible for Hazard Assessment, Monitoring, Observations, Data and Analysis Dr. David Green National Oceanic and Atmospheric.
TMALL 0141 Presentation v 1.0 Asset Management Bo Olsson Bucharest October 7th, 2015.
"... To design the control system that effectively matches the plant requires an understanding of the plant rivaling that of the plant's designers, operators,
I & C.
Role of Self-Assessment V.C. Agarwal, Director (HR) NPCIL,INDIA.
California Energy Action Plan December 7, 2004 Energy Report: 2004 and 2005 Overview December 7, 2004.
Smart Grid Vision: Vision for a Holistic Power Supply and Delivery Chain Stephen Lee Senior Technical Executive Power Delivery & Utilization November 2008.
COST as a network instrument: Actions in Sustainable Construction and Energy Efficient Buildings S3 Platform on smart specialisation Workshop “Towards.
Equipment Life Optimization Program (ELOP) Doug Hilleman February 10, 2011.
RPA – Robotic Process Automation
REFLECTED IN JAMAICA’S ENERGY POLICY
Attention CFOs How to tighten your belt and still survive May 18, 2017.
Organization and Knowledge Management
Critical Factors in Managing Technology
RESEARCH, EDUCATION, AND TRAINING FOR THE SMART GRID
Presentation transcript:

Nuclear Power in the United States Joseph Naser Electric Power Research Institute IAEA Technical Working Group on Nuclear Power Plant Control and Instrumentation (TWG-NPPCI) May 20-22, 2009 Vienna, Austria

2 © 2009 Electric Power Research Institute, Inc. All rights reserved. Nuclear Power Plants in the United States Operating plants: –104 with a total net installed capacity of ~100 GW(e) –51 plants have approved license extensions from 40 to 60 years –18 license extension applications under NRC review –21 license extension applications announced so far New plants: –1 currently under construction –4 new plant certified designs and 3 more designs under review –17 COL license applications submitted for 26 new units –All based on digital I&C and HSI technology

3 © 2009 Electric Power Research Institute, Inc. All rights reserved. Interest in Extending License to 80 Years Survey of executives in 2007 Significant thought given to long-term operation 87% believe license renewal past 60 years is likely Driven by economics and expected carbon constraints

4 © 2009 Electric Power Research Institute, Inc. All rights reserved. Benefit of Extending License to 80 Years

5 © 2009 Electric Power Research Institute, Inc. All rights reserved. EPRI Long-Term Operation Program Addresses actions needed from today until end of 80-year or longer operating life Additional or accelerated projects to facilitate decisions in 2015 time frame Projects address capacity factor, reliability, cost and/or safety Project areas identified: –Instrumentation and control –Materials aging –Nuclear fuel –Safety analysis Coordinate with DOE LWR Sustainability Program

6 © 2009 Electric Power Research Institute, Inc. All rights reserved. DOE LWR Sustainability Program Vision “Existing nuclear power plants will continue to safely provide clean and affordable electricity beyond their first license extension periods…” Goals –Develop fundamental scientific basis –Apply knowledge in collaborative public-private partnerships –Apply new technologies to address obsolescence Program –11-year program (2009 to 2020) –Coordinated by Idaho National Laboratory (INL) –EPRI working with INL and others to define R&D Pathways

7 © 2009 Electric Power Research Institute, Inc. All rights reserved. Issues to Address for Viable and Robust I&C and HSI for LTO Several critical issues need to be addressed to allow operating plants to have long term operation up to 80 years or even more, examples are: –Aging and obsolescence –Need for new staff and bringing up their level of expertise quickly –Maintain high levels of safety and meet new regulatory and environmental requirements –Reduce the likelihood of human error, equipment damage, forced outages, exposure to radiation and other harsh environmental conditions (e.g., heat, cold, chemical) and challenges to safety

8 © 2009 Electric Power Research Institute, Inc. All rights reserved. Issues to Address for Viable and Robust I&C and HSI for LTO (continued) –Maintain economic viability (improve efficiency and reliability and reduce time to perform jobs, time on critical path during outages, need for rework) –Leverage scarce resources –Supplemental workers need to be trained and brought to acceptable performance levels as quickly as possible –Technologies expected by younger generation needed to attract them into the industry New tools and capabilities needed to address the issues to enable extended plant operation

9 © 2009 Electric Power Research Institute, Inc. All rights reserved. Operation of Nuclear Power Plants Beyond 60 Years Extended lifetimes –Will necessitate I&C and HSI modernization – and more than once, need to “design for replacement” –Provide the opportunities to gain substantial benefits from digital I&C and HSI

10 © 2009 Electric Power Research Institute, Inc. All rights reserved. Sensors and Data Collection and Transmission Provide more and better information –Harsh environment tolerant Smart transmitters/sensors Fiber optics –Wireless sensors and sensor networks –Self-testing, self-diagnostic, error tolerant, self-correcting –I&C, HSI, information and communications architectures –Micro and nano technologies

11 © 2009 Electric Power Research Institute, Inc. All rights reserved. Monitoring, Diagnostics and Prognostics Support equipment reliability and predictive maintenance to reduce likelihood of equipment damage, unplanned outages and safety challenges as well as maintenance costs and likelihood of human maintenance errors: –On-line monitoring, early fault detection, and diagnostics including the use of wireless –Prognostic capabilities –Integration of static information with active monitoring –Estimation techniques for accuracy of diagnostics and prognostics –Centralized monitoring for best access to experts –Automation of monitoring and analysis to help centralized staff –General reduction in staffing needs for subject matter experts (SMEs) –General reduction in development time for SMEs that are needed

12 © 2009 Electric Power Research Institute, Inc. All rights reserved. Simulation & Visualization Simulation capabilities, enhanced visualization and interactive interfaces –Revolutionize training (operations, maintenance, security, …) improving quality and reducing time consumption –Improve planning and decision-making (including faster-than-real- time simulation) –Improve design, reduce errors and facilitate early input from users –Link design, procurement, planning, installation, and plant acceptance into a seamless information process –Support development, tuning, dynamic performance testing, man- in-the-loop operability testing and human factors evaluation –Support rapid evaluation of proposed changes –Reduce likelihood of human errors –Provide visualization of key documents showing interrelationships and linking references

13 © 2009 Electric Power Research Institute, Inc. All rights reserved. Automation & Intelligent Agents Aids to reduce workload and likelihood of human errors –Automate procedures and activities more timely, accurately, and easily done by a system –Automate repetitive, time-consuming and error-prone activities –Use intelligent agents for information access with minimum human effort and time consumption –Incorporate automatic checks for human and system activities –Reduce time demands and stress levels allowing humans to better focus on essential activities –Enable humans to do what they do best and systems to do what they do best

14 © 2009 Electric Power Research Institute, Inc. All rights reserved. Human-System Interfaces Facilitate well-informed situation awareness and decision-making –Emphasis on user-friendly design for the user to accomplish job –Apply human factors engineering principles –Information presented in a manner that it is quickly and easily understood –Present preconditioned decision quality information

15 © 2009 Electric Power Research Institute, Inc. All rights reserved. Technology Transfer & Training Knowledge capture and presentation Computer-based training Interactive technical reports Workshops and training classes Collection of industry (including other industries) operating experience –Lessons learned –Best practices –Avoid learning curve mishaps Integrate knowledge captured into the design information, training content, procedure content structure for life time retention and use

16 © 2009 Electric Power Research Institute, Inc. All rights reserved. New Plants Increase benefits through implementation of digital I&C and HSI, information and communications technologies for the first wave of plants and pursue even greater benefits for future waves; e.g., –Increased functionality and automation –Improved technical specifications –New support systems –… Take advantage of what is being done in other countries’ nuclear plants and in other industries

17 © 2009 Electric Power Research Institute, Inc. All rights reserved. Challenges Still Remain Business cases needed to get approval for new systems Technologies and systems must support safe and economic operation and reduce likelihood of human error Design, technical, implementation, and regulatory challenges must be overcome The proof of concept, pilot testing, and field implementation cycle must be shortened Training on new technologies Nuclear industry global, need as much common agreement on technical and regulatory requirements as possible Regulatory issues and guidance need to be addressed generically to reduce costs, risks and time required to license new plants and to modernize operating plants

18 © 2009 Electric Power Research Institute, Inc. All rights reserved. Questions?