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Cullen, D.E.
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1981
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1981
AbstractAbstract
[en] This document contains the summary documentation for the ENDF/B pre-processing codes: LINEAR, RECENT, SIGMA1, GROUPIE, EVALPLOT, MERGER, DICTION, CONVERT. This summary documentation is merely a copy of the comment cards that appear at the beginning of each programme; these comment cards always reflect the latest status of input options, etc. For the latest published documentation on the methods used in these codes see UCRL-50400, Vol.17 parts A-E, Lawrence Livermore Laboratory (1979)
Primary Subject
Source
Dec 1981; 49 p
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Report
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Thomas, C.R.; de Saussure, G.; Marable, J.H.
Oak Ridge National Lab., TN (USA)1981
Oak Ridge National Lab., TN (USA)1981
AbstractAbstract
[en] A two-month survey of nuclear fuel-cycle models was undertaken. This report presents the information forthcoming from the survey. Of the nearly thirty codes reviewed in the survey, fifteen of these codes have been identified as potentially useful in fulfilling the tasks of the Nuclear Energy Analysis Division (NEAD) as defined in their FY 1981-1982 Program Plan. Six of the fifteen codes are given individual reviews. The individual reviews address such items as the funding agency, the author and organization, the date of completion of the code, adequacy of documentation, computer requirements, history of use, variables that are input and forecast, type of reactors considered, part of fuel cycle modeled and scope of the code (international or domestic, long-term or short-term, regional or national). The report recommends that the Model Evaluation Team perform an evaluation of the EUREKA uranium mining and milling code
Primary Subject
Source
Apr 1981; 59 p; Available from NTIS., PC A04/MF A01
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Report
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DayDay, N.
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1980
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1980
AbstractAbstract
[en] A description and operating instructions are supplied for the following ENDF/B-V Processing Programs: CHECKER, CRECT, STNDRD, FIZCON, PSYCHE, RESEND, INTER, INTEND, SUMRIZ, PLOTEF, LSTFCV, RIGEL. These programs can be obtained on magnetic tape, free of charge, from the IAEA Nuclear Data Section. (author)
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Jul 1980; 19 p
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Report
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AbstractAbstract
No abstract available
Original Title
Software-Entwicklungen
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Source
Hahn-Meitner-Institut fuer Kernforschung Berlin G.m.b.H. (Germany, F.R.). Bereich Kern- und Strahlenphysik; 193 p; 1982; p. 85-88; Published in summary form only.
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Report
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AbstractAbstract
No abstract available
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Source
International Atomic Energy Agency, Vienna (Austria); p. 403-416; 1973; Panel on neutron nuclear data evaluation; Vienna, Austria; 30 Aug 1971
Record Type
Report
Literature Type
Conference
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INIS IssueINIS Issue
Cullen, D.E.
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1983
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1983
AbstractAbstract
[en] This is the summary documentation for the 1983 version of the ENDF/B Pre-Processing Codes LINEAR, RECENT, SIGMA1, GROUPIE, EVALPLOT, MERGER, DICTION, COMPLOT, CONVERT. This summary documentation is merely a copy of the comment cards that appear at the beginning of each programme; these comment cards always reflect the latest status of input options, etc
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Secondary Subject
Source
Jun 1983; vp
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Report
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Reference NumberReference Number
INIS VolumeINIS Volume
INIS IssueINIS Issue
McLaughlin, K.
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1984
International Atomic Energy Agency, Vienna (Austria). Nuclear Data Section1984
AbstractAbstract
[en] A description and operating instructions are supplied for the following ENDF/B-V Processing Programs: CHECKER, CRECT, STNDRD, FIZCON, PSYCHE, RESEND, INTER, INTEND, SUMRIZ, PLOTEF, LSTFCV, RIGEL. These programs can be obtained on magnetic tape, free of charge, from the IAEA Nuclear Data Section. (author)
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Secondary Subject
Source
Mar 1984; 16 p
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Report
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Dunn, F.E.; Malloy, D.J.; Mohr, D.
Argonne National Lab., IL (USA)1987
Argonne National Lab., IL (USA)1987
AbstractAbstract
[en] A wide range of thermal hydraulics computer codes have been developed by various organizations in the US. These codes cover an extensive range of purposes from within-assembly-wise pin temperature calculations to plant wide transient analysis. The codes are used for static analysis, for analysis of protected anticipated transients, and for analysis of a wide range of unprotected transients for the more recent inherently safe LMR designs. Some of these codes are plant-specific codes with properties of a specific plant built into them. Other codes are more general and can be applied to a number of plants or designs. These codes, and the purposes for which they have been used, are described
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Source
27 Apr 1987; 13 p; American Nuclear Society international meeting on advances in reactor physics, mathematics and computation; Paris (France); 27-30 Apr 1987; Available from NTIS, PC A02/MF A01 as DE87004952
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Report
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AbstractAbstract
No abstract available
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Source
American Nuclear Society meeting; San Francisco, CA, USA; 12 - 16 Nov 1979; CONF-791103--; Published in summary form only.
Record Type
Journal Article
Literature Type
Conference
Journal
Transactions of the American Nuclear Society; ISSN 0003-018X;
; v. 33 p. 452-453

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Stone, S.R.; Weisheit, J.C.
Lawrence Livermore National Lab., CA (USA)1984
Lawrence Livermore National Lab., CA (USA)1984
AbstractAbstract
[en] A comparison among nine computer codes shows surprisingly large differences where it had been believed that the theroy was well understood. Each code treats an argon plasma, optically thin and with no external photon flux; temperatures vary around 1 keV and ion densities vary from 6 x 1017 cm-3 to 6 x 1021 cm-3. At these conditions most ions have three or fewer bound electrons. The calculated populations of 0-, 1-, 2-, and 3-electron ions differ from code to code by typical factors of 2, in some cases by factors greater than 300. These differences depend as sensitively on how may Rydberg states a code allows as they do on variations among computed collision rates. 29 refs., 23 figs
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Nov 1984; 90 p; Available from NTIS, PC A05; 3 as DE86000751; Paper copy only, copy does not permit microfiche production.
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