Implementation of online monitoring and prognostics in existing U.S. nuclear power plants will involve coordinating the efforts of national laboratories, utilities, universities, and private companies. Large amounts of operational data, including failure data, are necessary for the development and calibration of diagnostic and prognostic algorithms. The ability to use data from all available resources will provide the most expeditious avenue to implementation of online monitoring in existing NPPs; however, operational plant data are often considered proprietary. Secure methods for transferring and storing data are discussed, along with a potential technology for implementation of online monitoring
A Future Vision of a transformed nuclear plant operating model based on an integrated digital enviro...
This research effort is a part of the Light-Water Reactor Sustainability (LWRS) Program, which is a ...
Reliability and economy are two major concerns for a nuclear power generation system. Next generatio...
Today’s online monitoring technologies provide opportunities to perform predictive and proactive hea...
Implementation of online monitoring and prognostics in existing U.S. nuclear power plants will invol...
Condition based online monitoring technologies and development of diagnostic and prognostic methodol...
<p>As the current generation of nuclear power plants have passed their mid-life, increased monitorin...
This report reviews the current state of the art of prognostics and health management (PHM) for nucl...
Interest in implementing advanced Prognostic Health Management (PHM) systems in commercial nuclear p...
The Light Water Reactor Sustainability program at Idaho National Laboratory is actively conducting r...
In support of expanding the use of nuclear power, interest is growing in methods of determining the ...
Safe, secure, reliable and sustainable energy supply is vital for advanced and industrialized life s...
The Light Water Reactor Sustainability (LWRS) Program is a research and development (R&D) program sp...
OAK-B135 This OSTI ID belongs to an IWO and is being released out of the system. The Program Manager...
In order to meet the ever increasing demand for energy, the United States nuclear industry is turnin...
A Future Vision of a transformed nuclear plant operating model based on an integrated digital enviro...
This research effort is a part of the Light-Water Reactor Sustainability (LWRS) Program, which is a ...
Reliability and economy are two major concerns for a nuclear power generation system. Next generatio...
Today’s online monitoring technologies provide opportunities to perform predictive and proactive hea...
Implementation of online monitoring and prognostics in existing U.S. nuclear power plants will invol...
Condition based online monitoring technologies and development of diagnostic and prognostic methodol...
<p>As the current generation of nuclear power plants have passed their mid-life, increased monitorin...
This report reviews the current state of the art of prognostics and health management (PHM) for nucl...
Interest in implementing advanced Prognostic Health Management (PHM) systems in commercial nuclear p...
The Light Water Reactor Sustainability program at Idaho National Laboratory is actively conducting r...
In support of expanding the use of nuclear power, interest is growing in methods of determining the ...
Safe, secure, reliable and sustainable energy supply is vital for advanced and industrialized life s...
The Light Water Reactor Sustainability (LWRS) Program is a research and development (R&D) program sp...
OAK-B135 This OSTI ID belongs to an IWO and is being released out of the system. The Program Manager...
In order to meet the ever increasing demand for energy, the United States nuclear industry is turnin...
A Future Vision of a transformed nuclear plant operating model based on an integrated digital enviro...
This research effort is a part of the Light-Water Reactor Sustainability (LWRS) Program, which is a ...
Reliability and economy are two major concerns for a nuclear power generation system. Next generatio...