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  4. Computational analysis of the effects of a boundary layer ingesting propulsion system in transonic flow
 
research article

Computational analysis of the effects of a boundary layer ingesting propulsion system in transonic flow

Mantic-Lugo, Vladislav
•
Doulgeris, Georgios
•
Singh, Riti
2013
Proceedings Of The Institution Of Mechanical Engineers Part G-Journal Of Aerospace Engineering

Continuous requirements for more efficient aircrafts lead to the design and analysis of novel propulsion configurations, with an example being the boundary layer ingestion. The complexity and integration challenges in such aircraft synergistic propulsion system characterize the research in this field, driven by the potential benefits. The aim of this article is to investigate the effects of boundary layer ingestion on the aerodynamics of a transonic wing, together with the quality of the flow ingested by the propulsion system. A two-dimensional computational model of a transonic airfoil with boundary layer ingesting propulsion system is developed in order to assess boundary layer ingestion for a commercial air transport at cruise conditions and highlight the complex integration issues arising from such configuration. A parametric analysis of the effects of flight conditions, nacelle geometry and engine operating point, on lift, pressure recovery, distortion, total pressure and velocity distribution at the intake, comes to enhance understanding of the performance of this configuration. The pressure distribution around the airfoil and the boundary layer growth are both substantially affected by the engine operating condition, which is represented by the mass flow ratio, with a direct impact on pressure recovery and lift. Mach number and angle of attack influences on lift and drag ingested are also investigated. Intake size and position on the airfoil appear to have significant effects on lift and losses ingested. In general, the results of this study include several aspects related to wing aerodynamics and ingested flow quality, which may facilitate design and integration of the boundary layer ingestion propulsion system for future commercial aircraft.

  • Details
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Type
research article
DOI
10.1177/0954410012453390
Web of Science ID

WOS:000321491700001

Author(s)
Mantic-Lugo, Vladislav
Doulgeris, Georgios
Singh, Riti
Date Issued

2013

Publisher

Professional Engineering Publishing

Published in
Proceedings Of The Institution Of Mechanical Engineers Part G-Journal Of Aerospace Engineering
Volume

227

Issue

8

Start page

1215

End page

1232

Subjects

Boundary layer ingestion

•

lift

•

ingested drag

•

propulsive efficiency

•

propulsion

•

aerodynamics

•

computational fluid dynamics

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
LFMI  
Available on Infoscience
October 1, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/95701
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