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Thrust Characteristics of Multiple Lifting Jets in Ground Proximity

Published 2019-08-16 From Langley Research Center 2 authors

Attribution

This is the abstract and citation. Full text lives at NASA NTRS — we link out rather than host. All credit to the authors and Langley Research Center.

Abstract

Verbatim from NASA NTRS. Not paraphrased, not summarized.

An investigation has been made to determine the thrust characteristics within ground proximity of a series of models which might represent vertical take-off-and-landing (VTOL) aircraft with multiple exit jet engines exhausting vertically downward beneath a lifting surface. Variations in simulated engine configurations were provided by a series of nozzle insert plugs in which the number of jet exits, located symmetrically on a fixed circle, was varied, or the diameter of the circle was varied for a given number of jet exits. represent lifting surfaces, and high-pressure air was used to simulate jet-engine exhaust. Plywood plates were used to The results of the investigation showed that increasing the number of exits, such that an annular jet configuration was approached, provided more favorable thrust characteristics within ground proximity than any other variation in the geometry of these multiple jets. Tests of a configuration with two nozzles approximating a fan-in-wing VTOL aircraft with fans located at different spanwise locations indicated that the augmentation in thrust within ground proximity was greater for the arrangement with the more inboard location of the nozzles.

Authors

  • Davenport, Edwin E. NASA Langley Research Center
  • Spreeman, Kenneth P. NASA Langley Research Center

Citation: Davenport, Edwin E., Spreeman, Kenneth P. (2019). Thrust Characteristics of Multiple Lifting Jets in Ground Proximity. Langley Research Center. NASA NTRS ID 20040030507. https://ntrs.nasa.gov/citations/20040030507 ↗