Conceptual design of boundary layer ingesting (BLI) aircraft requires a methodology that captures the aero-propulsive interactions in a parametric fashion. This entails modeling the impacts of BLI as a function of the airframe and propulsor design. Previous work has analyzed the sensitivity of these BLI effects to the propulsor size and throttle. This paper assesses the sensitivity of the BLI effects to the airframe design through a series of experiments, using CFD. The scope of this analysis is restricted to tube and wing type BLI concepts. Results from these studies help identify the critical airframe design space that needs to be considered when generating a parametric model of the BLI effects. Guidelines regarding the level of detail re...
Boundary Layer Ingestion (BLI) is a promising technology for reducing the impact of aviation on the ...
Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration tec...
Airframe-propulsion integration concepts that use boundary layer ingestion have the potential to red...
Presented at AIAA SciTech 2021 ConferenceThe impacts of boundary layer ingestion (BLI) on vehicle pe...
Presented at AIAA SciTech 2021 ConferenceAs part of an effort to develop a parametric and coupled ae...
Boundary Layer Ingestion (BLI) appears to be a promising solution to meet aggressive aviation fuel b...
Boundary Layer Ingestion (BLI) appears to be a promising solution to meet aggressive aviation fuel b...
Copyright © 2022 by Jai Ahuja and Dimitri Mavris. Published by the American Institute of Aeronautics...
Aircraft fuel efficiency, noise, and emissions are some of the most important aspects being addresse...
The methods incorporated in an aerodynamic analysis tool are introduced to support aircraft conceptu...
The inflow distortion to the fan introduced by the ingestion of the fuselage boundary layer is the m...
A propulsor design framework for maximizing the benefits of boundary layer ingestion is presented. T...
Boundary layer ingestion has emerged as a potential propulsion concept on novel aircraft configurati...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143109/1/1.C034601.pd
The aim of this research project was to investigate the benefits of hybrid-distributed propulsion an...
Boundary Layer Ingestion (BLI) is a promising technology for reducing the impact of aviation on the ...
Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration tec...
Airframe-propulsion integration concepts that use boundary layer ingestion have the potential to red...
Presented at AIAA SciTech 2021 ConferenceThe impacts of boundary layer ingestion (BLI) on vehicle pe...
Presented at AIAA SciTech 2021 ConferenceAs part of an effort to develop a parametric and coupled ae...
Boundary Layer Ingestion (BLI) appears to be a promising solution to meet aggressive aviation fuel b...
Boundary Layer Ingestion (BLI) appears to be a promising solution to meet aggressive aviation fuel b...
Copyright © 2022 by Jai Ahuja and Dimitri Mavris. Published by the American Institute of Aeronautics...
Aircraft fuel efficiency, noise, and emissions are some of the most important aspects being addresse...
The methods incorporated in an aerodynamic analysis tool are introduced to support aircraft conceptu...
The inflow distortion to the fan introduced by the ingestion of the fuselage boundary layer is the m...
A propulsor design framework for maximizing the benefits of boundary layer ingestion is presented. T...
Boundary layer ingestion has emerged as a potential propulsion concept on novel aircraft configurati...
Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/143109/1/1.C034601.pd
The aim of this research project was to investigate the benefits of hybrid-distributed propulsion an...
Boundary Layer Ingestion (BLI) is a promising technology for reducing the impact of aviation on the ...
Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration tec...
Airframe-propulsion integration concepts that use boundary layer ingestion have the potential to red...