
doi: 10.2172/763148 , 10.2172/563803
A twin-bridge calorimeter using optical fiber as the sensor element was constructed and tested. This system demonstrates the principle and capability of using optical fibers for heat-flow measurements of special nuclear material. This calorimeter uses piezoelectric-generated phase-carrier modulation with subsequent electronic signal processes to allow phase shifts as small as 1 microradian ({micro}rad) to be measured. The sensing element consists of 21-m lengths of single-mode optical fiber wrapped around sample and reference chambers. The sensitivity of the calorimeter was determined to be 74 radians (rad) of phase shift per milliwatt of thermal power. One milliwatt of thermal power is equivalent to 400 mg of plutonium (6% {sup 240}Pu). The system noise base was about 0.2 rad, equivalent to about 1 mg of plutonium.
Modulation, Including Nuclear And Particle Detectors, Calorimetry, Nuclear Materials Management, Heat Flux, 530, Plutonium, Fiber Optics, Calorimeters, 05 Nuclear Fuels, Sensitivity, 44 Instrumentation, 46 Instrumentation Related To Nuclear Science And Technology, Phase Shift, Optical Fibers
Modulation, Including Nuclear And Particle Detectors, Calorimetry, Nuclear Materials Management, Heat Flux, 530, Plutonium, Fiber Optics, Calorimeters, 05 Nuclear Fuels, Sensitivity, 44 Instrumentation, 46 Instrumentation Related To Nuclear Science And Technology, Phase Shift, Optical Fibers
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