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In-Pile Instrumentation Multi- Parameter System Utilizing Photonic Fibers and Nanovision
Author(s) -
Eric Burgett
Publication year - 2015
Language(s) - English
Resource type - Reports
DOI - 10.2172/1329192
Subject(s) - instrumentation (computer programming) , cladding (metalworking) , nuclear engineering , bundle , high fidelity , core (optical fiber) , neutron , neutron flux , detector , nuclear reactor core , materials science , mechanical engineering , engineering , computer science , electrical engineering , optics , physics , nuclear physics , metallurgy , composite material , operating system
An advanced in-pile multi-parameter reactor monitoring system is being proposed in this funding opportunity. The proposed effort brings cutting edge, high fidelity optical measurement systems into the reactor environment in an unprecedented fashion, including in-core, in-cladding and in-fuel pellet itself. Unlike instrumented leads, the proposed system provides a unique solution to a multi-parameter monitoring need in core while being minimally intrusive in the reactor core. Detector designs proposed herein can monitor fuel compression and expansion in both the radial and axial dimensions as well as monitor linear power profiles and fission rates during the operation of the reactor. In addition to pressure, stress, strain, compression, neutron flux, neutron spectra, and temperature can be observed inside the fuel bundle and fuel rod using the proposed system. The proposed research aims at developing radiation-hard, harsh-environment multi-parameter systems for insertion into the reactor environment. The proposed research holds the potential to drastically increase the fidelity and precision of in-core instrumentation with little or no impact in the neutron economy in the reactor environment while providing a measurement system capable of operation for entire operating cycles.

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