Boundary-layer ingestion (BLI) has been proposed as one of the novel airframe–engine integration technologies to reduce aircraft fuel consumption. The current numerical analysis involves the evaluation of the effect of fuselage design on the power consumption of a boundary-layer ingesting propulsor modeled as an actuator volume without nacelle. An axisymmetric fuselage model is used as a canonical case to study BLI in transonic flight conditions. The flowfield is investigated through the power balance and the exergy analysis methods. Results show that the fuselage geometry and flight conditions only have a minor effect on the BLI power saving benefit when compared to the effect on the drag power of the fuselage. This indicates that, for the...
Conceptual design of boundary layer ingesting (BLI) aircraft requires a methodology that captures th...
This thesis presents an assessment of the aerodynamic performance of an aircraft propulsion system, ...
Boundary layer ingestion (BLI) potentially offers significant reductions in fuel burn and pollutant ...
Aircraft fuel efficiency, noise, and emissions are some of the most important aspects being addresse...
Boundary Layer Ingestion (BLI) is a promising technology for reducing the impact of aviation on the ...
Boundary-layer ingestion (BLI) is a propulsor–airframe integration technology that promises substant...
This thesis experimentally assesses the benefit of Boundary Layer Ingestion (BLI) at the unaccelerat...
This thesis presents research on Boundary Layer Ingestion (BLI). BLI is an unconventional aircraft-e...
Boundary layer ingestion is a technology that can potentially deliver step improvements in fuel burn...
Abstract Boundary layer ingestion (BLI) potentially offers significant reductions in ...
The paper discusses optimality constellations for the design of boundary layer ingesting propulsive ...
The paper discusses optimality constellations for the design of boundary layer ingesting propulsive ...
The aim of this research project was to investigate the benefits of hybrid-distributed propulsion an...
The present methodological study aims to assess boundary layer ingestion (BLI) as a promising method...
The present methodological study aims to assess boundary layer ingestion (BLI) as a promising method...
Conceptual design of boundary layer ingesting (BLI) aircraft requires a methodology that captures th...
This thesis presents an assessment of the aerodynamic performance of an aircraft propulsion system, ...
Boundary layer ingestion (BLI) potentially offers significant reductions in fuel burn and pollutant ...
Aircraft fuel efficiency, noise, and emissions are some of the most important aspects being addresse...
Boundary Layer Ingestion (BLI) is a promising technology for reducing the impact of aviation on the ...
Boundary-layer ingestion (BLI) is a propulsor–airframe integration technology that promises substant...
This thesis experimentally assesses the benefit of Boundary Layer Ingestion (BLI) at the unaccelerat...
This thesis presents research on Boundary Layer Ingestion (BLI). BLI is an unconventional aircraft-e...
Boundary layer ingestion is a technology that can potentially deliver step improvements in fuel burn...
Abstract Boundary layer ingestion (BLI) potentially offers significant reductions in ...
The paper discusses optimality constellations for the design of boundary layer ingesting propulsive ...
The paper discusses optimality constellations for the design of boundary layer ingesting propulsive ...
The aim of this research project was to investigate the benefits of hybrid-distributed propulsion an...
The present methodological study aims to assess boundary layer ingestion (BLI) as a promising method...
The present methodological study aims to assess boundary layer ingestion (BLI) as a promising method...
Conceptual design of boundary layer ingesting (BLI) aircraft requires a methodology that captures th...
This thesis presents an assessment of the aerodynamic performance of an aircraft propulsion system, ...
Boundary layer ingestion (BLI) potentially offers significant reductions in fuel burn and pollutant ...