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CFD Evaluation Of Lean-Direct Injection Combustors for Commercial Supersonics Technology
Author(s) -
Kumud Ajmani,
Phil Lee,
Clarence T. Chang,
Maureen T. Kudlac
Publication year - 2019
Publication title -
aiaa propulsion and energy 2020 forum
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2019-4199
Subject(s) - computational fluid dynamics , environmental science , nuclear engineering , aerospace engineering , engineering
An overview is given of an effort that focused on using CFD analysis to complement design and configuration definition of Lean-Direct Injection (LDI) combustion concepts for NASA’s Commercial Supersonic Transport (CST) program. The National Combustion Code (OpenNCC) was used to perform non-reacting and twophase reacting flow computations for second and third generation LDI configurations at CST cruise conditions. All computations were performed with a consistent approach of mesh-generation, spray modeling, ignition and kinetics modeling. Emissions (EINOx) characteristics were predicted for CST cruise conditions, and compared with emissions data from experimental measurements to evaluate the fidelity of the CFD modeling approach to predict emissions changes in response to changes in supersonic cycle conditions.

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