As part of a multiphased program for subsonic transport high-lift flight research, flight tests were conducted on the Transport Systems Research Vehicle (B737-100 aircraft) at the NASA Langley Research Center, to obtain detailed flow characteristics of the high-lift flap system for correlation with computational and wind-tunnel investigations. Pressure distributions, skin friction, and flow-visualization measurements were made on a triple-slotted flap system for a range of flap deflections, chord Reynolds numbers (10 to 21 million), and Mach numbers (0.16 to 0.36). Experimental test results are given for representative flap settings indicating flow separation on the fore-flap element for the largest flap deflection. Comparisons of the in-flight flow measurements were made with predictions from available viscous multielement computational methods modified with simple-sweep theory. Computational results overpredicted the experimentally measured pressures, particularly in the case involving separation of the fore lap, indicating the need for better modeling of confluent boundary layers and three-dimensional sweep effects.
In-flight surface-flow measurements on a subsonic transport high-lift flap system
01.01.1992
Aufsatz (Konferenz)
Keine Angabe
Englisch
In-Flight Surface-Flow Measurements of a Subsonic Transport High-Lift Flap System
British Library Online Contents | 1992
|ICAS-92-3.7.3 In-Flight Surface-Flow Measurements of a Subsonic Transport High-Lift Flap System
British Library Conference Proceedings | 1992
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