This paper deals with designing a thrust distribution strategy when a Turboelectric Distributed Propulsion (TeDP) system of 16 embedded propulsors is installed on an aerodynamically optimized hybrid wing-body configuration. This HWB previously designed to satisfy conditions of trim, longitudinally static stability and specific cargo space is employed as the baseline configuration for the current study of seeking an optimal propulsion/power system. According to the nature of the entrance flow condition for each distributed propulsion passage in hybrid wing-body aircraft, the ingested boundary layer thickness differs and results in different propulsive reaction. An optimal distribution of thrust and power output is determined by how the syste...
In this paper, a turbo-electric propulsion system was analyzed, and its performance was assessed. Th...
Radical aircraft and propulsion system architecture changes may be required to continue historic per...
Meeting NASA's N+3 goals requires a fundamental shift in approach to aircraft and engine design...
System studies show that a N3-X hybrid wing-body aircraft with a turboelectric distributed propulsio...
The present paper details the design of the counter rotating fans for a Turboelectric Distributed Pr...
Structural configuration analysis of two advanced aircraft concepts with distributed hybrid-electric...
Hybrid Wing Body (HWB) aircraft is characterized by a flattened and airfoil-shaped body, which produ...
Meeting NASA's N+3 goals requires a fundamental shift in approach to aircraft and engine design. Mat...
In a bid to meet the requirements on drag reduction, consumer demands and the latest regulations on ...
Distributed electric propulsion is a fertile research topic aiming to increase the wing aerodynamic ...
Recent developments in the field of hybrid-electric propulsion (HEP) have opened the door to a wide ...
In response to growing aviation demands and concerns about the environment and energy usage, a team ...
The performance benefits of directly ingesting the boundary layer (BLI) on air vehicles with distrib...
We summarize the contributions to high-fidelity capabilities for analysis and design of hybrid wingb...
The blended wing body aircraft is one of the promising contenders for the next generation large tran...
In this paper, a turbo-electric propulsion system was analyzed, and its performance was assessed. Th...
Radical aircraft and propulsion system architecture changes may be required to continue historic per...
Meeting NASA's N+3 goals requires a fundamental shift in approach to aircraft and engine design...
System studies show that a N3-X hybrid wing-body aircraft with a turboelectric distributed propulsio...
The present paper details the design of the counter rotating fans for a Turboelectric Distributed Pr...
Structural configuration analysis of two advanced aircraft concepts with distributed hybrid-electric...
Hybrid Wing Body (HWB) aircraft is characterized by a flattened and airfoil-shaped body, which produ...
Meeting NASA's N+3 goals requires a fundamental shift in approach to aircraft and engine design. Mat...
In a bid to meet the requirements on drag reduction, consumer demands and the latest regulations on ...
Distributed electric propulsion is a fertile research topic aiming to increase the wing aerodynamic ...
Recent developments in the field of hybrid-electric propulsion (HEP) have opened the door to a wide ...
In response to growing aviation demands and concerns about the environment and energy usage, a team ...
The performance benefits of directly ingesting the boundary layer (BLI) on air vehicles with distrib...
We summarize the contributions to high-fidelity capabilities for analysis and design of hybrid wingb...
The blended wing body aircraft is one of the promising contenders for the next generation large tran...
In this paper, a turbo-electric propulsion system was analyzed, and its performance was assessed. Th...
Radical aircraft and propulsion system architecture changes may be required to continue historic per...
Meeting NASA's N+3 goals requires a fundamental shift in approach to aircraft and engine design...