A propulsion system analysis of an aircraft concept featuring a fuselage tail cone integrated turbo-electrically powered fan is presented. The aircraft has two underwing podded geared turbofan engines and an aft-fuselage mounted boundary layer ingesting fan. The fuselage fan is driven by an electric motor that is powered by power offtake from the main power plants under the wing. A long-range tube-and-wing aircraft with a year 2050 entry into service is used as a reference. A coupled multidisciplinary method for system level assessment of the turbo-electric boundary-layer ingesting propulsion system is presented. A correlation-based method is used to predict fuselage drag and a series of optimizations are carried out for a range of fuselage...
As EU has set a goal to reduce aircraft CO2 and NOx emissions by 75% and 90% respectively by year 20...
The blended wing body aircraft is one of the promising contenders for the next generation large tran...
Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration tec...
In this paper, a turbo-electric propulsion system was analyzed, and its performance was assessed. Th...
This work consists on the examination of the system level benefits of a partially turboelectric prop...
In this paper, a turbo‐electric propulsion system was analyzed, and its performance was assessed. Th...
This thesis presents an assessment of the aerodynamic performance of an aircraft propulsion system, ...
A single-aisle commercial transport concept with a turboelectric propulsion system architecture was ...
The paper discusses optimality constellations for the design of boundary layer ingesting propulsive ...
Aircraft fuel efficiency, noise, and emissions are some of the most important aspects being addresse...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
The aim of this research project was to investigate the benefits of hybrid-distributed propulsion an...
Theoretical and numerical aspects of aerodynamic efficiency of propulsion systems coupled to the bou...
The present methodological study aims to assess boundary layer ingestion (BLI) as a promising method...
Boundary layer ingestion is a technology that can potentially deliver step improvements in fuel burn...
As EU has set a goal to reduce aircraft CO2 and NOx emissions by 75% and 90% respectively by year 20...
The blended wing body aircraft is one of the promising contenders for the next generation large tran...
Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration tec...
In this paper, a turbo-electric propulsion system was analyzed, and its performance was assessed. Th...
This work consists on the examination of the system level benefits of a partially turboelectric prop...
In this paper, a turbo‐electric propulsion system was analyzed, and its performance was assessed. Th...
This thesis presents an assessment of the aerodynamic performance of an aircraft propulsion system, ...
A single-aisle commercial transport concept with a turboelectric propulsion system architecture was ...
The paper discusses optimality constellations for the design of boundary layer ingesting propulsive ...
Aircraft fuel efficiency, noise, and emissions are some of the most important aspects being addresse...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
The aim of this research project was to investigate the benefits of hybrid-distributed propulsion an...
Theoretical and numerical aspects of aerodynamic efficiency of propulsion systems coupled to the bou...
The present methodological study aims to assess boundary layer ingestion (BLI) as a promising method...
Boundary layer ingestion is a technology that can potentially deliver step improvements in fuel burn...
As EU has set a goal to reduce aircraft CO2 and NOx emissions by 75% and 90% respectively by year 20...
The blended wing body aircraft is one of the promising contenders for the next generation large tran...
Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration tec...