Influence of Expansion Level on Base Pressure and Reattachment Length

Authors

  • Khizar Ahmed Pathan Trinity College of Engineering and Research, Pune, Maharashtra, 411048, India
  • Prakash S Dabeer Department of Mechanical Engineering, Acharya Institute of Technology, Bangalore, Karnataka 560107, India
  • Sher Afghan Khan Mechanical Engineering Dept., Faculty of Engineering, International Islamic University Malaysia, Kuala Lumpur, Selangor, 50728, Malaysia

Keywords:

base pressure, nozzle pressure ratio, Mach number, supersonic flow

Abstract

In high speed projectiles like rocket, the thrust is created by the convergent divergent nozzle. The flow from the nozzle is exhausted in the enlarged duct of larger diameter to maximize the thrust. When the flow from the nozzle is exhausted in the enlarged duct, the base pressure gets reduced and hence increases base drag. This paper numerically simulates and investigates the flow field and the effectiveness of the Nozzle Pressure Ratio (NPR) on the base pressure, development of the flow field in the enlarged duct, the location of reattachment point, and the reattachment length. The supersonic flow was generated by the C-D nozzle, and the same is exited in the enlarged duct of area ratio 4.84 (ratio of enlarged duct area to nozzle exit area). The base pressure and the wall pressure distribution along the enlarged duct length have been studied. The Mach numbers considered for CFD analysis are 1.5, 2.0 and 2.5. NPR and the L/D ratios of the study are from 2, 5, and 8. Based on the results it is concluded that with enhancement in NPR, the nozzle becomes under-expanded, the reattachment length is reduced and the base pressure tends to get reduced at all the parameters of the present investigation.

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Published

2021-01-16

How to Cite

Ahmed Pathan, K. ., S Dabeer, . P. ., & Khan, S. A. . (2021). Influence of Expansion Level on Base Pressure and Reattachment Length. CFD Letters, 11(5), 22–36. Retrieved from https://www.akademiabaru.com/submit/index.php/cfdl/article/view/3160
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