Investigation of mixing characteristics of coflow rectangular nozzle of aspect ratio 2 and 3

Author:

Murugesan Vignesh Kumar,Suseela Moorthi Aravindh Kumar,Ramachandran Ganapathy Subramanian L.

Abstract

Purpose The purpose of this study is to understand experimentally the mixing characteristics of a two-stream exhaust system with a supersonic Mach 1.5 primary jet that exits the rectangular C-D nozzle surrounded by a sonic secondary jet from a convergent rectangular nozzle by varying the aspect ratio (AR = 2 and 3) similar to those that can be available for future high-speed commercial aircraft. Design/methodology/approach This paper focuses on the experimental results of effects of AR at various expansion levels of jets issued/delivered from a central rectangular convergent-divergent nozzle of AR 2 and 3 surrounded by a coflow from a convergent rectangular sonic nozzle. The lip thickness of the primary nozzle is 2.2 mm. various nozzle pressure ratios (NPRs) ranging from 2, 3, 3.69 and 4 were chosen for pressure measurements. Findings For all the NPRs, AR 3 had a shorter core than AR 2. Also, AR 3 was found to decay faster in the transition and fully developed zones. The lateral plots show that the AR has an influence on the jet spread. Originality/value The structure of waves existing in the potential core of the rectangular coflow jet along with the major and minor axis planes was visualized by the shadowgraph technique.

Publisher

Emerald

Subject

Aerospace Engineering

Reference24 articles.

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Effect of increasing bypass ratio on supersonic co-flowing jet with finite lip thickness;International Journal of Heat and Fluid Flow;2024-07

2. Numerical study on the influence of turbine swirl on exhaust system;Physics of Fluids;2024-04-01

3. Effect of varying velocity ratio on thin lip co-flowing jet;5TH INTERNATIONAL CONFERENCE ON INNOVATIVE DESIGN, ANALYSIS & DEVELOPMENT PRACTICES IN AEROSPACE & AUTOMOTIVE ENGINEERING: I-DAD’22;2023

4. Experimental and numerical studies of co-flowing jets with finite lip thickness and varying bypass ratio;Advances in Materials and Processing Technologies;2022-06-07

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