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Thermal Modeling of Nuclear Waste Package Designs for Disposal in Tuff

Thermal Modeling of Nuclear Waste Package Designs for Disposal in Tuff
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Total Pages: 18
Release: 1983
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ISBN:

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Lawrence Livermore National Laboratory is involved in the design and testing of high-level nuclear waste packages. Many of the aspects of waste package design and testing (e.g., corrosion and leaching) depend in part on the temperature history of the emplaced packages. This paper discusses thermal modeling and analysis of various emplaced waste package conceptual designs including the models used, the assumptions and approximations made, and the results obtained. 6 references, 6 figures, 3 tables.


Nuclear Waste Package Design for the Vadose Zone in Tuff

Nuclear Waste Package Design for the Vadose Zone in Tuff
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Publisher:
Total Pages: 16
Release: 1984
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ISBN:

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This report presents an overview of the selection and analysis of conceptual waste package designs that will be used by the Nevada Nuclear Waste Storage Investigations (NNWSI) project for disposal of high-level nuclear waste (HLW) at the proposed Yucca Mountain, Nevada Site. The design requirements that the waste packages are required to meet are listed. Concept drawings for the reference designs and one alternative package design are shown. Four metal alloys; 304L SS, 321 SS, 316L SS and Incoloy 825 have been selected for candidate canister/overpack materials, and 1020 carbon steel has been selected as the reference metal for the borehole liners. A summary of the results of technical and economic analysis supporting the selection of the conceptual waste package designs is included. Post-closure containment and release rates are not discussed in this paper. 17 references, 2 figures, 2 tables.


Design of a Nuclear-waste Package for Emplacement in Tuff

Design of a Nuclear-waste Package for Emplacement in Tuff
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Publisher:
Total Pages: 20
Release: 1983
Genre:
ISBN:

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Design, modeling, and testing activities are under way at LLNL in the development of high level nuclear waste package designs. We discuss the geological characteristics affecting design, the 10CFR60 design requirements, conceptual designs, metals for containment barriers, economic analysis, thermal modeling, and performance modeling.