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Program snikr1 c c c new version july, 1993. 4)) c call litel(0) c c if the requested burnup is zero, bypass origen-s calculations. 0) go to 1000 c c prepare an origen-s run to calculate decay for requested c cooling times c call tymstp(tstep,tcool,ncool) c call wrtors(tstep) c c write data for transfer to step 3. e. not in step 3) 1000 continue nout=nout3 call rdctin1 call clect(1) call wrtice c c c write number densities for mixing in keno to file nout3 call wrtkeno c c c write a record for scale indicating that it abort origen step write(nors,210) 210 format(’#origens’/’1t’/’ c c c c ’/’5$$ 3 2t’/’4t’/’56$$ f0 5t’/’end’) write a record for transfer to step 3 indicating that snikr3 exit immediately write(nstep) (ittl(i),i=1,20) n72=-1000 write(nstep) n72,nout1,nors,n71,nice,nout3 c 2000 stop end c-------------------------------------------------------------------subroutine rdall(tcool) c c read all data needed for snikr1 and for snikr3.

The figure also shows assembly position numbers for the full core, based on one-eighth core symmetry and the numbering scheme shown in Fig. 5. Using these position numbers, arrays of assemblies and core former segments were used to define larger units to minimize the number of "holes" placed in the global unit. Figure 8 illustrates the clustering of assemblies used. The central array marked as unit 50 was actually the innermost component of global unit 50, which also contained the core barrel, thermal shield, and reactor vessel.

B. L. , Oak Ridge Natl. Lab. (in press). 12. B. H. Wakeman and S. A. Ahmed, Evaluation of Burnup Credit for Dry Storage Casks, EPRI NP-6494, Electric Power Research Institute, August 1989. 13. D. G. Napolitano and D. G. , March 1992. 14. N. M. Greene, "BONAMI-S: Resonance Self-Shielding by the Bondarenko Method," Sect. F1 of SCALE: A Modular Code System for Performing Standardized Computer Analyses for Licensing Evaluation, NUREG/CR-0200, Rev. 5 (ORNL/NUREG/ CSD-2/R5), Vols. 1, 2 and 3 (draft November 1993).

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