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Langton, C.; Kosson, D.; Garrabrants, A.
SRS (US). Funding organisation: US Department of Energy (United States)2010
SRS (US). Funding organisation: US Department of Energy (United States)2010
AbstractAbstract
[en] The Cementitious Barriers Partnership Project (CBP) is a multi-disciplinary, multi-institution cross cutting collaborative effort supported by the US Department of Energy (DOE) to develop a reasonable and credible set of tools to improve understanding and prediction of the structural, hydraulic and chemical performance of cementitious barriers used in nuclear applications. The period of performance is >100 years for operating facilities and > 1000 years for waste management. The CBP has defined a set of reference cases to provide the following functions: (i) a common set of system configurations to illustrate the methods and tools developed by the CBP, (ii) a common basis for evaluating methodology for uncertainty characterization, (iii) a common set of cases to develop a complete set of parameter and changes in parameters as a function of time and changing conditions, (iv) a basis for experiments and model validation, and (v) a basis for improving conceptual models and reducing model uncertainties. These reference cases include the following two reference disposal units and a reference storage unit: (i) a cementitious low activity waste form in a reinforced concrete disposal vault, (ii) a concrete vault containing a steel high-level waste tank filled with grout (closed high-level waste tank), and (iii) a spent nuclear fuel basin during operation. Each case provides a different set of desired performance characteristics and interfaces between materials and with the environment. Examples of concretes, grout fills and a cementitious waste form are identified for the relevant reference case configurations.
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31 Aug 2010; 61 p; AC09-08SR22470; Available from http://sti.srs.gov/fulltext/CBP-TR-2010-006.pdf; PURL: https://www.osti.gov/servlets/purl/988587-A0kg0N/; doi 10.2172/988587
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Report
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BUILDING MATERIALS, COMPOSITE MATERIALS, CONCRETES, CONTAINMENT, ENERGY SOURCES, ENGINEERED SAFETY SYSTEMS, FUELS, LIFETIME, MANAGEMENT, MATERIALS, NUCLEAR FUELS, RADIOACTIVE MATERIALS, RADIOACTIVE WASTE MANAGEMENT, RADIOACTIVE WASTES, REACTOR MATERIALS, REINFORCED MATERIALS, STORAGE, WASTE DISPOSAL, WASTE MANAGEMENT, WASTE STORAGE, WASTES
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