Advanced Simulation and Computing Fiscal Year 2011-2012 Implementation Plan, Revision 0 (open access)

Advanced Simulation and Computing Fiscal Year 2011-2012 Implementation Plan, Revision 0

The Stockpile Stewardship Program (SSP) is a single, highly integrated technical program for maintaining the surety and reliability of the U.S. nuclear stockpile. The SSP uses past nuclear test data along with current and future non-nuclear test data, computational modeling and simulation, and experimental facilities to advance understanding of nuclear weapons. It includes stockpile surveillance, experimental research, development and engineering (D&E) programs, and an appropriately scaled production capability to support stockpile requirements. This integrated national program requires the continued use of current facilities and programs along with new experimental facilities and computational enhancements to support these programs. The Advanced Simulation and Computing Program (ASC) is a cornerstone of the SSP, providing simulation capabilities and computational resources to support the annual stockpile assessment and certification, to study advanced nuclear weapons design and manufacturing processes, to analyze accident scenarios and weapons aging, and to provide the tools to enable stockpile Life Extension Programs (LEPs) and the resolution of Significant Finding Investigations (SFIs). This requires a balanced resource, including technical staff, hardware, simulation software, and computer science solutions. In its first decade, the ASC strategy focused on demonstrating simulation capabilities of unprecedented scale in three spatial dimensions. In its second decade, ASC is …
Date: April 22, 2010
Creator: McCoy, M.; Phillips, J.; Hpson, J. & Meisner, R.
Object Type: Report
System: The UNT Digital Library
Plasticity at High Pressures and Strain Rates Using Oblique-Impact Isentropic-Compression Experiments (open access)

Plasticity at High Pressures and Strain Rates Using Oblique-Impact Isentropic-Compression Experiments

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Date: March 22, 2010
Creator: Florando, Jeff N.; Jiao, Tong; Grunschel, Stephen E.; Clifton, Rodney J.; Lassila, David H.; Ferranti, Louis, Jr. et al.
Object Type: Report
System: The UNT Digital Library
Identifying the Proteins that Mediate the Ionizing Radiation Resistance of Deinococcus Radiodurans R1 (open access)

Identifying the Proteins that Mediate the Ionizing Radiation Resistance of Deinococcus Radiodurans R1

The primary objectives of this proposal was to define the subset of proteins required for the ionizing radiation (IR) resistance of Deinococcus radiodurans R1, characterize the activities of those proteins, and apply what was learned to problems of interest to the Department of Energy.
Date: February 22, 2010
Creator: Battista, John R
Object Type: Report
System: The UNT Digital Library