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Journal ArticleDOI

Forced mixer lobes in ejector designs

Walter M. Presz, +2 more
- 01 Aug 1988 - 
- Vol. 4, Iss: 20, pp 350-355
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TLDR
In this article, a large scale axial vorticity in the mixing duct is generated by the augmentation of a primary ejector with a large number of augmentation lobes.
Abstract
Forced mixer lobes in augmentor primary ejectors obtain a 100-percent increase in pumping over conventional design, together with nearly complete mixing in very short mixing ducts, through the generation of large scale axial vorticity in the mixing duct. The vorticity causes rapid mixing of the primary and secondary flows with low losses; since mixing length is minimized, wall friction losses are reduced, allowing more secondary flow to be pumped for a given total pressure in the primary flow. Analytical results are presented that are judged to have significant implications for future ejector test work.

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References
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Proceedings ArticleDOI

Forced mixer lobes in ejector designs

TL;DR: In this article, a large scale axial vorticity in the mixing duct is generated by the augmentation of a primary ejector with a large number of augmentation lobes.
Journal ArticleDOI

Evaluation of Hypermixing for Thrust Augmenting Ejectors

TL;DR: In this paper, the authors presented a summary of the radial planarity in terms of phase and amplitude of the probe readings from two of the rakes, 180° apart, at the engine IGV plane.
Journal ArticleDOI

Investigation of mixing in a turbofan exhaust duct. II Computer codeapplication and verification

TL;DR: In this article, a three-dimensional analysis of turbofan forced mixer nozzle aerodynamics is presented, showing that the complex flow structure is dominated by geometrically induced secondary flow rather than by turbulence.
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