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Extra resources for Analysis of PWR Critical Configurations Vol 1 - Summary
A. Ahmed, Evaluation of Burnup Credit for Dry Storage Casks, EPRINP-6494, Electric Power Research Institute, August 1989. 14. D. G. Napolitano and D. G. , March 1992. 15. O. W. Hermann and R. M. Westfall, $ORIGEN-S: SCALE System Module to Calculate Fuel Depletion, Actinide Transmutation, Fission Product Buildup and Decay, and Associated Radiation Source Terms,# Sect. F7 of SCALE: A Modular Code System for Performing Standardized Computer Analyses for Licensing Evaluation, NUREG/CR-0200, Rev. 4 (ORNL/NUREG/CSD-2/R4), Vols.
Nuclear Regulatory Commission, MS TWFN-9F29, Washington, DC 20555 102. D. J. Nolan, 2650 Park Tower Drive, Suite 800, Vienna, VA 22180 103-104. S. O. Box 62, Oak Ridge, TN 37831 105. O. Box 2008, Oak Ridge, TN 37831 106. C. E. O. Box 5800, Div. 6631, MS 0715, Albuquerque, NM 87185-0716 107. N. S. Nuclear Regulatory Commission, Office of Nuclear Materials Safety and Safeguards, TWFN 8F5, Washington, DC 20555 108. O. , Palo Alto, CA 94304 109. P. , Columbia, SC 29210 110. T. Parish, Department of Nuclear Engineering, Texas A & M University, College Station, TX 778433313 111-113.
135 Xe burns in rapidly under full-power conditions, but does not accumulate under HZP startup conditions. , the worth of the remaining nuclides is small). 5%. 1% )k worth of the additional 145 isotopes for the Surry BZ case is likely to result from short-lived decay products not included in the 48-isotope set; such nuclides would have been burned out in the Surry EF case, and would have decayed away prior to the TMI BZ startup. Table 12 also shows the estimated worth of the burnup credit fission products (fission-product subset of the 25 burnup credit nuclides listed in Table 2) plus 241Am and the estimated worth of the remaining fission products plus all other nonuranium, nonplutonium actinides.
Analysis of PWR Critical Configurations Vol 1 - Summary