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Neutronics Benchmark of a MOX Assembly with Near-weapons-grade Plutonium

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Release : 1998
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Book Synopsis Neutronics Benchmark of a MOX Assembly with Near-weapons-grade Plutonium by :

Download or read book Neutronics Benchmark of a MOX Assembly with Near-weapons-grade Plutonium written by . This book was released on 1998. Available in PDF, EPUB and Kindle. Book excerpt: One of the proposed ways to dispose of surplus weapons-grade plutonium (Pu) is to irradiate the high-fissile material in light-water reactors in order to reduce the Pu enrichment to the level of spent fuels from commercial reactors. Considerable experience has been accumulated about the behavior of mixed-oxide (MOX) uranium and plutonium fuels for plutonium recycling in commercial reactors, but the experience is related to Pu enrichments typical of spent fuels quite below the values of weapons-grade plutonium. Important decisions related to the kind of reactors to be used for the disposition of the plutonium are going to be based on calculations, so the validation of computational algorithms related to all aspects of the fuel cycle (power distributions, isotopics as function of the burnup, etc.), for weapons-grade isotopics is very important. Analysis of public domain data reveals that the cycle-2 irradiation in the Quad cities boiling-water reactor (BWR) is the most recent US destructive examination. This effort involved the irradiation of five MOX assemblies using 80 and 90% fissile plutonium. These benchmark data were gathered by General Electric under the sponsorship of the Electric Power Research Institute. It is emphasized, however, that global parameters are not the focus of this benchmark, since the five bundles containing MOX fuels did not significantly affect the overall core performance. However, since the primary objective of this work is to compare against measured post-irradiation assembly data, the term benchmark is applied here. One important reason for performing the benchmark on Quad Cities irradiation is that the fissile blends (up to 90%) are higher than reactor-grade and, quite close to, weapons-grade isotopics.

Neutronics Benchmark for the Quad Cities-1 (Cycle 2) Mixed Oxide Assembly Irradiation

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Release : 1998
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Book Synopsis Neutronics Benchmark for the Quad Cities-1 (Cycle 2) Mixed Oxide Assembly Irradiation by :

Download or read book Neutronics Benchmark for the Quad Cities-1 (Cycle 2) Mixed Oxide Assembly Irradiation written by . This book was released on 1998. Available in PDF, EPUB and Kindle. Book excerpt: Reactor physics computer programs are important tools that will be used to estimate mixed oxide fuel (MOX) physics performance in support of weapons grade plutonium disposition in US and Russian Federation reactors. Many of the computer programs used today have not undergone calculational comparisons to measured data obtained during reactor operation. Pin power, the buildup of transuranics, and depletion of gadolinium measurements were conducted (under Electric Power Research Institute sponsorship) on uranium and MOX pins irradiated in the Quad Cities-1 reactor in the 1970's. These measurements are compared to modern computational models for the HELIOS and SCALE computer codes. Good agreement on pin powers was obtained for both MOX and uranium pins. The agreement between measured and calculated values of transuranic isotopes was mixed, depending on the particular isotope.

Analyses of Weapons-Grade MOX VVER-1000 Neutronics Benchmarks

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Release : 2001
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Book Synopsis Analyses of Weapons-Grade MOX VVER-1000 Neutronics Benchmarks by :

Download or read book Analyses of Weapons-Grade MOX VVER-1000 Neutronics Benchmarks written by . This book was released on 2001. Available in PDF, EPUB and Kindle. Book excerpt: A series of unit pin-cell benchmark problems have been analyzed related to irradiation of mixed oxide fuel in VVER-1000s (water-water energetic reactors). One-dimensional, discrete-ordinates eigenvalue calculations of these benchmarks were performed at ORNL using the SAS2H control sequence module of the SCALE-4.3 computational code system, as part of the Fissile Materials Disposition Program (FMDP) of the US DOE. Calculations were also performed using the SCALE module CSAS to confirm the results. The 238 neutron energy group SCALE nuclear data library 238GROUPNDF5 (based on ENDF/B-V) was used for all calculations. The VVER-1000 pin-cell benchmark cases modeled with SAS2H included zero-burnup calculations for eight fuel material variants (from LEU UO2 to weapons-grade MOX) at five different reactor states, and three fuel depletion cases up to high burnup. Results of the SAS2H analyses of the VVER-1000 neutronics benchmarks are presented in this report. Good general agreement was obtained between the SAS2H results, the ORNL results using HELIOS-1.4 with ENDF/B-VI nuclear data, and the results from several Russian benchmark studies using the codes TVS-M, MCU-RFFI/A, and WIMS-ABBN. This SAS2H benchmark study is useful for the verification of HELIOS calculations, the HELIOS code being the principal computational tool at ORNL for physics studies of assembly design for weapons-grade plutonium disposition in Russian reactors.

Proceedings of the International Conference on the Physics of Nuclear Science and Technology

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Release : 1998
Genre : Science
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Book Synopsis Proceedings of the International Conference on the Physics of Nuclear Science and Technology by :

Download or read book Proceedings of the International Conference on the Physics of Nuclear Science and Technology written by . This book was released on 1998. Available in PDF, EPUB and Kindle. Book excerpt:

Physics and Fuel Performance of Reactor-based Plutonium Disposition

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Release : 1999
Genre : Science
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Book Synopsis Physics and Fuel Performance of Reactor-based Plutonium Disposition by : OECD Nuclear Energy Agency

Download or read book Physics and Fuel Performance of Reactor-based Plutonium Disposition written by OECD Nuclear Energy Agency. This book was released on 1999. Available in PDF, EPUB and Kindle. Book excerpt: This publication presents workshop results which reviewed existing technical information from the civil nuclear power programmes that are beneficial to weapons-grade plutonium disposition.

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