Selection of a computer code for Hanford low-level waste engineered-system performance assessment
Author(s) -
B. Peter McGrail,
Lenna A. Mahoney
Publication year - 1995
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/118381
Subject(s) - hanford site , radioactive waste , waste management , high level waste , source code , environmental science , environmental remediation , code (set theory) , site selection , engineering , computer science , set (abstract data type) , contamination , law , political science , programming language , operating system , ecology , biology
Planned performance assessments for the proposed disposal of low-level waste (LLW) glass produced from remediation of wastes stored in underground tanks at Hanford, Washington will require calculations of radionuclide release rates from the subsurface disposal facility. These calculations will be done with the aid of computer codes. Currently available computer codes were ranked in terms of the feature sets implemented in the code that match a set of physical, chemical, numerical, and functional capabilities needed to assess release rates from the engineered system. The needed capabilities were identified from an analysis of the important physical and chemical process expected to affect LLW glass corrosion and the mobility of radionuclides. The highest ranked computer code was found to be the ARES-CT code developed at PNL for the US Department of Energy for evaluation of and land disposal sites
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