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Benchmark Physics Tests in the Metallic-Fueled Assembly ZPPR-15

H. F. McFarlane, S. B. Brumbach, S. G. Carpenter, P. J. Collins

Nuclear Science and Engineering / Volume 101 / Number 2 / February 1989 / Pages 137-152

Technical Paper / dx.doi.org/10.13182/NSE101-137

Results of the first benchmark physics tests of a metallic-fueled, demonstration-size, liquid-metal reactor (LMR) are reported. A simple, two-zone, cylindrical conventional assembly was built with three distinctly different compositions to represent the stages of the Integral Fast Reactor fuel cycle. Experiments included criticality, control, power distribution, reaction rate ratios, reactivity coefficients, shielding, kinetics, and spectrum. Analysis was done with three-dimensional nodal diffusion calculations and ENDF/B-V.2 cross sections. Predictions of the ZPPR-15 reactor physics parameters agreed sufficiently well with the measured values to justify confidence in design analyses for metallic-fueled LMRs.