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PMID: 41501090 Published · epublish English Journal Article

Passive control of suddenly expanded flow and temperature distribution along the duct at critical Mach number.

Scientific reports ·Vol. 16 ·No. 1 ·2026-01-07 ·页码 712

Tamboli S, Bellary SAI, Abdullah R, Monis RS, Khan SA, Jatti VS, Kate AM, Ingole YR, Jilani SS

Abstract

Abrupt relief increases at the blunt base are common in aerospace because a recirculation zone decreases pressure and increases drag. This study investigates the control of base pressure at Mach 1.0 by using quarter-ribs placed at various points within an axisymmetric duct. CFD simulations with ANSYS Fluent identified the optimal rib size, position, and nozzle pressure ratio (NPR) for either maximizing or minimizing base pressure. Air flows from a converging nozzle into a 16 mm diameter duct, with lengths ranging from L/D = 1 to 6, rib radii from 1 mm to 2.5 mm, and placements from L/D = 0.5 to 2.0. Results demonstrate that ribs significantly impact base pressure by interacting with the shear layer and duct wall. This interaction affects flow reattachment and pressure differences, which depend on the size and location of the ribs. Ribs at 0.5D and 1D slightly increase base pressure, while those at 1.5D and 2D are more effective. Larger rib radii enhance shear layer reattachment, further boosting pressure. Temperature analysis reveals a rise immediately behind the rib, attributed to the increased flow area, followed by a subsequent drop. These findings enable the optimization of passive control strategies in high-speed aerodynamics, thereby improving system reliability, reducing costs, increasing fuel efficiency, and supporting environmental goals.

Keywords
Base pressure ratio Computational fluid dynamics Expansion level L/D ratio Passive control Ribs
作者与单位
共 9 位作者,点击展开单位 / ORCID
Tamboli Shahid
Symbiosis Institute of Technology, Symbiosis International University, Pune, Maharashtra, India.
Bellary Sayed Ahmed Imran
Department of Robotics and Automation Engineering, Zeal College of Engineering and Research, Savitribai Phule, Pune University, Pune, 411041, Maharashtra, India. [email protected].
Abdullah Roslinda
Department of Mechanical and Aerospace Engineering, Faculty of Engineering, International Islamic University, Kuala Lumpur, 53100, Malaysia.
Monis Renita Sharon
Department of Mathematics, Shri Madhwa Vadiraja Institute of Technology and Management, VTU Belgaum, Bantakal, Udupi, India.
Khan Sher Afghan
Department of Mechanical and Aerospace Engineering, Faculty of Engineering, International Islamic University, Kuala Lumpur, 53100, Malaysia.
Jatti Vijaykumar S
Symbiosis Skills and Professional University, Kiwale, Pune, Maharashtra, India.
Kate Ajit Madhukarrao
Department of Mechanical Engineering, Zeal College of Engineering and Research, Savitribai Phule, Pune University , Pune, 411041, Maharashtra, India.
Ingole Yogesh Ramesh
Department of Robotics and Automation Engineering, Zeal College of Engineering and Research, Savitribai Phule, Pune University, Pune, 411041, Maharashtra, India.
Jilani Shaikh Sarfaraj
Department of Mechanical Engineering, KJ's Trinity College of Engineering and Research, Savitribai Phule, Pune University, Pune, 411048, Maharashtra, India.
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2026-01-07
电子出版
2026-00-07
页码
712
Language
English
Country/Region
England
NLM ID
101563288
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