Numerical Simulation of Powered High-Lift Flow

Author:

Gong Zhi Bin1,Li Jie1,Tian Bin2

Affiliation:

1. Northwestern Polytechnical University

2. Avenida de la Universidad

Abstract

To achieve short-take-off-and-landing (STOL) performance, numerous airframe/propulsion integration (API) technologies have been developed for military and commercial transports. Powered lift technology refers to a concept of utilizing the propulsion exhaust flows to increase lift through an increase in wing circulation []. Over the past seventy years, various concepts have been explored to accomplish this goal. From the point of view of technical characteristics, powered lift concepts can be sorted into three groups: a circulation control wing, blown flaps, and jet wing. Most of other concepts are slight deviations of these three.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference5 articles.

1. Yaros, Steven F., et al, Synergistic Airframe-Propulsion Interactions and Integrations, NASA/TM-1998-207644, March (1998).

2. H. A. Griffin, et al, Computational Fluid Dynamics Analysis of Externally Blown Flap Configuration for Transport Aircraft, Journal of Aircraft, Vol. 45, No. 1, January-February 2008: 172-184.

3. Li, J., Li, F.W., and E, Q., Numerical Simulation of Transonic Flow over Wing-Mounted Twin-Engine Transport Aircraft, Journal of Aircraft, Vol., 37, No. 3, 2000, pp.469-478.

4. Hirose, N., Asai, K., and Ikawa, K., Transonic 3-D Euler Analysis of Flows Around Fan Jet Engine and Turbine Powered Simulator, National Aerospace Lab., NAL-TR-1045 (Japan), Tokyo, Japan, Nov. (1989).

5. Slotnick, J. P., Hannon, J. A., and Chaffin, M., Overview of the First AIAA CFD High Lift Prediction Workshop (Invited), AIAA Paper 2011-862.

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