A New Approach and Computational Algorithm for Sensitivity/Uncertainty Analysis for SED and SAD with Application to Beryllium Integral Experiments
Author:
Affiliation:
1. University of California-Los Angeles, School of Engineering and Applied Science 6288 Boelter Hall, Los Angeles, California 90024
Publisher
Informa UK Limited
Subject
Nuclear Energy and Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/NSE93-A15333
Reference47 articles.
1. M. A. ABDOU et al. “A Blanket Comparison and Selection Study—Interim Report,” ANL/FPP/TM-177, Argonne National Laboratory (1983).
2. Bulk Interim Reports 2-11, COPE-2338, Lawrence Livermore National Laboratory (1955-1956).
3. Neutron Multiplication Studies in Beryllium for Fusion Reactor Blankets
4. Neutron Multiplication Measurement in BeO for 14-MeV Neutrons
5. Reanalysis of Neutron Multiplication Measurements in Thick Beryllium and Graphite Assemblies for 14-MeV Neutrons
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1. Fusion Integral Experiments and Analysis and the Determination of Design Safety Factors – II: Application to the Prediction Uncertainty of Tritium Production Rate from the U.S. DOE/JAERI Collaborative Program on Fusion Blanket Neutronics;Fusion Technology;1995-09
2. Fusion Integral Experiments and Analysis and the Determination of Design Safety Factors – I: Methodology;Fusion Technology;1995-09
3. Nuclear Analysis of Integral Experiments on a Li2O Test Assembly with Local Heterogeneities Utilizing a 14-MeV Neutron Source;Fusion Technology;1995-09
4. Direct Nuclear Heating Measurements and Analyses for Plasma-Facing Materials;Fusion Technology;1995-08
5. Quantification of design margins and safety factors based on the prediction uncertainty in tritium production rate from fusion integral experiments of the USDOE/JAERI collaborative program on fusion blanket neutronics;Fusion Engineering and Design;1995-03
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