Sensitivity Analysis of the Fission Gas Behavior Model in BISON.

Sensitivity Analysis of the Fission Gas Behavior Model in BISON.
Title Sensitivity Analysis of the Fission Gas Behavior Model in BISON. PDF eBook
Author
Publisher
Pages 31
Release 2013
Genre
ISBN

Download Sensitivity Analysis of the Fission Gas Behavior Model in BISON. Book in PDF, Epub and Kindle

This report summarizes the result of a NEAMS project focused on sensitivity analysis of a new model for the fission gas behavior (release and swelling) in the BISON fuel performance code of Idaho National Laboratory. Using the new model in BISON, the sensitivity of the calculated fission gas release and swelling to the involved parameters and the associated uncertainties is investigated. The study results in a quantitative assessment of the role of intrinsic uncertainties in the analysis of fission gas behavior in nuclear fuel.

Uncertainty and Sensitivity Analysis of Fission Gas Behavior in Engineering-scale Fuel Modeling

Uncertainty and Sensitivity Analysis of Fission Gas Behavior in Engineering-scale Fuel Modeling
Title Uncertainty and Sensitivity Analysis of Fission Gas Behavior in Engineering-scale Fuel Modeling PDF eBook
Author
Publisher
Pages 11
Release 2014
Genre
ISBN

Download Uncertainty and Sensitivity Analysis of Fission Gas Behavior in Engineering-scale Fuel Modeling Book in PDF, Epub and Kindle

The role of uncertainties in fission gas behavior calculations as part of engineering-scale nuclear fuel modeling is investigated using the BISON fuel performance code and a recently implemented physics-based model for the coupled fission gas release and swelling. Through the integration of BISON with the DAKOTA software, a sensitivity analysis of the results to selected model parameters is carried out based on UO2 single-pellet simulations covering different power regimes. The parameters are varied within ranges representative of the relative uncertainties and consistent with the information from the open literature. The study leads to an initial quantitative assessment of the uncertainty in fission gas behavior modeling with the parameter characterization presently available. Also, the relative importance of the single parameters is evaluated. Moreover, a sensitivity analysis is carried out based on simulations of a fuel rod irradiation experiment, pointing out a significant impact of the considered uncertainties on the calculated fission gas release and cladding diametral strain. The results of the study indicate that the commonly accepted deviation between calculated and measured fission gas release by a factor of 2 approximately corresponds to the inherent modeling uncertainty at high fission gas release. Nevertheless, higher deviations may be expected for values around 10% and lower. Implications are discussed in terms of directions of research for the improved modeling of fission gas behavior for engineering purposes.

Comprehensive Nuclear Materials

Comprehensive Nuclear Materials
Title Comprehensive Nuclear Materials PDF eBook
Author
Publisher Elsevier
Pages 4871
Release 2020-07-22
Genre Science
ISBN 0081028660

Download Comprehensive Nuclear Materials Book in PDF, Epub and Kindle

Materials in a nuclear environment are exposed to extreme conditions of radiation, temperature and/or corrosion, and in many cases the combination of these makes the material behavior very different from conventional materials. This is evident for the four major technological challenges the nuclear technology domain is facing currently: (i) long-term operation of existing Generation II nuclear power plants, (ii) the design of the next generation reactors (Generation IV), (iii) the construction of the ITER fusion reactor in Cadarache (France), (iv) and the intermediate and final disposal of nuclear waste. In order to address these challenges, engineers and designers need to know the properties of a wide variety of materials under these conditions and to understand the underlying processes affecting changes in their behavior, in order to assess their performance and to determine the limits of operation. Comprehensive Nuclear Materials, Second Edition, Seven Volume Set provides broad ranging, validated summaries of all the major topics in the field of nuclear material research for fission as well as fusion reactor systems. Attention is given to the fundamental scientific aspects of nuclear materials: fuel and structural materials for fission reactors, waste materials, and materials for fusion reactors. The articles are written at a level that allows undergraduate students to understand the material, while providing active researchers with a ready reference resource of information. Most of the chapters from the first Edition have been revised and updated and a significant number of new topics are covered in completely new material. During the ten years between the two editions, the challenge for applications of nuclear materials has been significantly impacted by world events, public awareness, and technological innovation. Materials play a key role as enablers of new technologies, and we trust that this new edition of Comprehensive Nuclear Materials has captured the key recent developments. Critically reviews the major classes and functions of materials, supporting the selection, assessment, validation and engineering of materials in extreme nuclear environments Comprehensive resource for up-to-date and authoritative information which is not always available elsewhere, even in journals Provides an in-depth treatment of materials modeling and simulation, with a specific focus on nuclear issues Serves as an excellent entry point for students and researchers new to the field

Sensitivity Analysis of OECD Benchmark Tests in BISON.

Sensitivity Analysis of OECD Benchmark Tests in BISON.
Title Sensitivity Analysis of OECD Benchmark Tests in BISON. PDF eBook
Author
Publisher
Pages 30
Release 2015
Genre
ISBN

Download Sensitivity Analysis of OECD Benchmark Tests in BISON. Book in PDF, Epub and Kindle

This report summarizes a NEAMS (Nuclear Energy Advanced Modeling and Simulation) project focused on sensitivity analysis of a fuels performance benchmark problem. The benchmark problem was defined by the Uncertainty Analysis in Modeling working group of the Nuclear Science Committee, part of the Nuclear Energy Agency of the Organization for Economic Cooperation and Development (OECD). The benchmark problem involv ed steady - state behavior of a fuel pin in a Pressurized Water Reactor (PWR). The problem was created in the BISON Fuels Performance code. Dakota was used to generate and analyze 300 samples of 17 input parameters defining core boundary conditions, manuf acturing tolerances, and fuel properties. There were 24 responses of interest, including fuel centerline temperatures at a variety of locations and burnup levels, fission gas released, axial elongation of the fuel pin, etc. Pearson and Spearman correlatio n coefficients and Sobol' variance - based indices were used to perform the sensitivity analysis. This report summarizes the process and presents results from this study.

Sensitivity Analysis of the Gap Heat Transfer Model in BISON.

Sensitivity Analysis of the Gap Heat Transfer Model in BISON.
Title Sensitivity Analysis of the Gap Heat Transfer Model in BISON. PDF eBook
Author
Publisher
Pages 58
Release 2014
Genre
ISBN

Download Sensitivity Analysis of the Gap Heat Transfer Model in BISON. Book in PDF, Epub and Kindle

This report summarizes the result of a NEAMS project focused on sensitivity analysis of the heat transfer model in the gap between the fuel rod and the cladding used in the BISON fuel performance code of Idaho National Laboratory. Using the gap heat transfer models in BISON, the sensitivity of the modeling parameters and the associated responses is investigated. The study results in a quantitative assessment of the role of various parameters in the analysis of gap heat transfer in nuclear fuel.

Reactor Fuels, Materials and Systems under Extreme Environments

Reactor Fuels, Materials and Systems under Extreme Environments
Title Reactor Fuels, Materials and Systems under Extreme Environments PDF eBook
Author Wenzhong Zhou
Publisher Frontiers Media SA
Pages 360
Release 2022-03-25
Genre Technology & Engineering
ISBN 2889747662

Download Reactor Fuels, Materials and Systems under Extreme Environments Book in PDF, Epub and Kindle

Fully-Coupled Metallic Fuel Performance Simulations Using BISON.

Fully-Coupled Metallic Fuel Performance Simulations Using BISON.
Title Fully-Coupled Metallic Fuel Performance Simulations Using BISON. PDF eBook
Author
Publisher
Pages
Release 2015
Genre
ISBN

Download Fully-Coupled Metallic Fuel Performance Simulations Using BISON. Book in PDF, Epub and Kindle

This document is a set of slides intended to accompany a talk at a meeting. The first topic taken up is zirconium redistribution. The rod edge Zr increase is evidently due to the Soret term and temperature gradient. Then metallic fission gas release modeling is considered. Based on a GRSIS/FEAST model, the approach of generating fission gas in the fuel matrix is described. A sensitivity study on parameters is presented, including sodium bond & diffusion coefficient sensitivity along with dt sensitivity. Finally, results of some coupled simulations are shown, with ideas about future work.