Mechanics Informed Neutron Noise Monitoring to Perform Remote Condition Assessment for Reactor Vessel Internals

Author:

Banyay Gregory A.1,Palamara Matthew J.2,Preston Jessica N.2,Smith Stephen D.2

Affiliation:

1. Applied Research Laboratory, The Pennsylvania State University , State College, PA 16875

2. Westinghouse Electric Company , Cranberry Township, PA 16066

Abstract

Abstract The use of neutron noise analysis in pressurized water reactors to detect and diagnose degradation represents the practice of pro-active structural health monitoring for reactor vessel internals. Recent enhancements to this remote condition monitoring and diagnostic computational framework quantify the sensitivity of the structural dynamics to different degradation scenarios. This methodology leverages benchmarked computational structural mechanics models and machine learning methods to enhance the interpretability of neutron noise measurement results. The novelty of the methodology lies not in the particular technologies and algorithms but our amalgamation into a holistic computational framework for structural health monitoring. Recent experience revealed the successful deployment of this methodology to pro-actively diagnose different degradation scenarios, thus enabling prognostic asset management for reactor structures.

Publisher

ASME International

Subject

Mechanical Engineering,Safety Research,Safety, Risk, Reliability and Quality

Reference38 articles.

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2. Operation and Maintenance of Nuclear Power Plants;ASME,2017

3. Operational Feedback on Internal Structure Vibration in 54 French PWRs During 300 Fuel Cycles;Progress Nucl. Energy,1995

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