The application of lean, premixed, prevaporized combustion to aircraft turbine engine systems can result in benefits in terms of superior combustion performance, improved combustor and turbine durability, and environmentally acceptable pollutant emissions. Lean, premixed prevaporized combustion is particularly attractive for reducing the oxides of nitrogen emissions during high altitude cruise. The NASA stratospheric cruise emission reduction program will evolve and demonstrate lean, premixed, prevaporized combustion technology for aircraft engines. This multiphased program is described. In addition, the various elements of the fundamental studies phase of the program are reviewed, and results to date of many of these studies are summarized
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
Several combustor concepts were designed and tested to demonstrate significant reductions in aircraf...
A program was performed to evolve and demonstrate advanced combustor technology aimed at achieving t...
Recommendations were formulated on the status and application of lean premixed/prevaporized combusti...
The Forum was held to present the results of recent and current work intended to provide basic infor...
Four combustor concepts, designed for the energy efficient engine, utilize variable geometry or othe...
An array of experiments designed to explore the potential of advanced combustion techniques for cont...
Advanced emission reduction techniques for five existing aircraft gas turbine engines are evaluated....
Gas turbine engine combustor technology for the reduction of pollutant emissions is summarized. Vari...
To accomplish simultaneous reduction of unburned hydrocarbons, carbon monoxide, and oxides of nitrog...
Phase 1 of the Lean Premixed-Prevaporized Comubstor Design Study is a nine month analytical study ef...
Forecasts of engine exhaust emissions that may be practicably achievable for future commercial aircr...
Combustor test rig results indicate that substantial reductions from current emission levels of carb...
Effective emission control techniques have been identified and a wide spectrum of potential applicat...
Tests were conducted to determine the effectiveness of prevaporization and premixing in reducing the...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
Several combustor concepts were designed and tested to demonstrate significant reductions in aircraf...
A program was performed to evolve and demonstrate advanced combustor technology aimed at achieving t...
Recommendations were formulated on the status and application of lean premixed/prevaporized combusti...
The Forum was held to present the results of recent and current work intended to provide basic infor...
Four combustor concepts, designed for the energy efficient engine, utilize variable geometry or othe...
An array of experiments designed to explore the potential of advanced combustion techniques for cont...
Advanced emission reduction techniques for five existing aircraft gas turbine engines are evaluated....
Gas turbine engine combustor technology for the reduction of pollutant emissions is summarized. Vari...
To accomplish simultaneous reduction of unburned hydrocarbons, carbon monoxide, and oxides of nitrog...
Phase 1 of the Lean Premixed-Prevaporized Comubstor Design Study is a nine month analytical study ef...
Forecasts of engine exhaust emissions that may be practicably achievable for future commercial aircr...
Combustor test rig results indicate that substantial reductions from current emission levels of carb...
Effective emission control techniques have been identified and a wide spectrum of potential applicat...
Tests were conducted to determine the effectiveness of prevaporization and premixing in reducing the...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
Several combustor concepts were designed and tested to demonstrate significant reductions in aircraf...
A program was performed to evolve and demonstrate advanced combustor technology aimed at achieving t...