Use your Kerberos password to choose your section from the list provided below. The file will download as a Word document.
A. APPLICATIONS
I. CODE PROJECTS
- Presto/Adagio – Solid Mechanics Code Development
- Calore – Thermal Simulation Capabilities in SIERRA
- Goma – Strongly Coupled Multi-Physics Transport Simulation
- Fuego/Syrinx
- Salinas
- SACCARA – Compressible Fluid Mechanics/Aerothermodynamics Code Development
- VIPAR – Parachute Performance Prediction Code Development
- ALEGRA
- EMPHASIS – ElectroMagnetic Physics Analysis System
- ChiliSpice – High Performance Electrical Modeling and Simulation
- CEPTRE/ITS
- Pegasus – Neutron Tube Modeling and Simulation
- Thor – Penetration
- SIERRA
- EMPHASIS
- Electrical Systems
III. CROSSCUT ENABLING TECHNOLOGIES
- Meshing
- Visualization
- Libraries
- Advanced Computing Technologies
IV. TERASCALE APPLICATIONS
- Performance
- Safety
- Manufacturing
V. PRODUCTION COMPUTING
- Finite Element I/O Subsystem
- SIERRA Code Management System
- Codes for the Complex
I. V&V SUPPORT ELEMENTS
- V&V Infrastructure Activities
- Peer Reviewing of V&V Plans
- Software Quality Engineering Practices
- Validation Methodologies
- Crosscutting Verification Activities
II. CODE-SPECIFIC V&V ACTIVITIES
- Solid Mechanics (Adagio/Presto)
- Calore
- Goma
- Salinas
- SACCARA
- VIPAR
- ALEGRA
- EMPHASIS
- ChiliSpice
- CEPTRE/ITS
- Pegasus
- SIERRA
III. WEAPONS SYSTEMS
- Design Integration
C. MATERIALS AND PHYSICS MODELS
I. SUB-GRID PHYSICS DEVELOPMENT
- Sub-Grid Physics Implementation
- Fluid, Thermal, Aerosciences, and Reactive Processes
- Material, Solid, and Structural Dynamics
- Crosscutting Technologies
- Encapsulation and Electrical Devices
II. MATERIALS SIMULATION FOR RELIABILITY
- Aging and Failure of Stockpile Materials Exposed to Radiation
- Degradation of Organic Materials
- Microstructure-Driven Processing and Failure
- PZT – Microstructure-Level Simulation of Shock Response of PZT 95/5
- Microscopic Models for Predicting Metals Corrosion Degradation
III. WEAPON SYSTEMS MODELING
- Revolution in Engineering (REM)
IV. RADIATION & HIGH-PRESSURE EFFECTS