Engine/wing interference in podded installations can introduce relevant changes to their isolated behaviour, especially for large turbofans with an ultra-high bypass ratio. With such coupled flow field, the interaction is best described by the integrated force acting on the whole aircraft. Rather than focusing on drag or thrust metrics separately, in this paper we maximise the net resulting force on the NASA CRM wing body with underwing-installed turbofans through a multi-level optimisation procedure of the engine nacelle. The first stage involves two-dimensional axisymmetric geometries for cowl and exhaust ducts shapes optimisation. The solutions are transformed into three-dimensional nacelles with pylon, featuring a non-axisymmetric inlet...
It is envisaged that the next generation of civil aero-engines will employ high bypass ratios to low...
In the pursuit of ever more fuel-efficient engines, the fan diameter and bypass ratio are increasing...
To reduce specific fuel consumption, it is expected that the next generation of aero-engines will op...
The installation aerodynamics of ultra-high bypass ratio turbofan engine nacelles involves a strong ...
Turbofan engines with ultra-high bypass ratio require more aggressive nacelle designs to limit the d...
Turbofan engines with ultra-high bypass ratio require more aggressive nacelle designs to limit the d...
The design of a civil aeroengine nacelle is a complex multi-objective constrained problem, where sev...
The design of a civil aeroengine nacelle is a complex multi-objective constrained problem, where sev...
The purpose was to develop a preliminary nacelle design method to evaluate the impact of the nacelle...
The paper analyzes the aerodynamics benefits of above-wing mounting of turbofan engines and performs...
The Collaborative Research Center 880 is investigating different technologies and configurative vari...
Installation effects on large turbofans with ultra-high bypass ratio derive from the complex three-d...
The Collaborative Research Center 880 is investigating different technologies and configurative vari...
Copyright © 2022 by Jai Ahuja, S. Ashwin Renganathan, and Dimitri N. Mavris. Published by the Americ...
Copyright © 2022 by Jai Ahuja, S. Ashwin Renganathan, and Dimitri N. Mavris. Published by the Americ...
It is envisaged that the next generation of civil aero-engines will employ high bypass ratios to low...
In the pursuit of ever more fuel-efficient engines, the fan diameter and bypass ratio are increasing...
To reduce specific fuel consumption, it is expected that the next generation of aero-engines will op...
The installation aerodynamics of ultra-high bypass ratio turbofan engine nacelles involves a strong ...
Turbofan engines with ultra-high bypass ratio require more aggressive nacelle designs to limit the d...
Turbofan engines with ultra-high bypass ratio require more aggressive nacelle designs to limit the d...
The design of a civil aeroengine nacelle is a complex multi-objective constrained problem, where sev...
The design of a civil aeroengine nacelle is a complex multi-objective constrained problem, where sev...
The purpose was to develop a preliminary nacelle design method to evaluate the impact of the nacelle...
The paper analyzes the aerodynamics benefits of above-wing mounting of turbofan engines and performs...
The Collaborative Research Center 880 is investigating different technologies and configurative vari...
Installation effects on large turbofans with ultra-high bypass ratio derive from the complex three-d...
The Collaborative Research Center 880 is investigating different technologies and configurative vari...
Copyright © 2022 by Jai Ahuja, S. Ashwin Renganathan, and Dimitri N. Mavris. Published by the Americ...
Copyright © 2022 by Jai Ahuja, S. Ashwin Renganathan, and Dimitri N. Mavris. Published by the Americ...
It is envisaged that the next generation of civil aero-engines will employ high bypass ratios to low...
In the pursuit of ever more fuel-efficient engines, the fan diameter and bypass ratio are increasing...
To reduce specific fuel consumption, it is expected that the next generation of aero-engines will op...