Terascale High-Fidelity Simulations of Turbulent Combustion with Detailed Chemistry: Spray Simulations | |
Rutland, Christopher J. | |
关键词: ACCURACY; ALGORITHMS; CHEMISTRY; COMBUSTION; COMPUTERS; LIQUID FUELS; MIXTURES; PHYSICS; SANDIA NATIONAL LABORATORIES; SIMULATION Combustion; spray combustion; direct numerical simulation; diesel combustion; | |
DOI : 10.2172/951592 RP-ID : DOE/ER/15234-Final PID : OSTI ID: 951592 Others : TRN: US201003%%194 |
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美国|英语 | |
来源: SciTech Connect | |
【 摘 要 】
The Terascale High-Fidelity Simulations of Turbulent Combustion (TSTC) project is a multi-university collaborative effort to develop a high-fidelity turbulent reacting flow simulation capability utilizing terascale, massively parallel computer technology. The main paradigm of the approach is direct numerical simulation (DNS) featuring the highest temporal and spatial accuracy, allowing quantitative observations of the fine-scale physics found in turbulent reacting flows as well as providing a useful tool for development of sub-models needed in device-level simulations. Under this component of the TSTC program the simulation code named S3D, developed and shared with coworkers at Sandia National Laboratories, has been enhanced with new numerical algorithms and physical models to provide predictive capabilities for turbulent liquid fuel spray dynamics. Major accomplishments include improved fundamental understanding of mixing and auto-ignition in multi-phase turbulent reactant mixtures and turbulent fuel injection spray jets.
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RO201705170002191LZ | 629KB | download |