Drag reduction for flow past a square cylinder through corner chamfering

  • Nawaz, Muhammad Ahsan; 
  • Abubaker, Muhammad; 
  • Kumar, R. Ajith; 
  • Sohn, Chang-Hyun
Citations

WEB OF SCIENCE

7
Citations

SCOPUS

9

초록

This study investigates the unsteady incompressible flow around a square cylinder with different chamfer ratios (CRs) using a commercial finite volume code, ANSYS Fluent. CR ranges from 0.0 (sharp square cylinder) to 0.5 (diamond cylinder) with variable increments. Detailed analysis of flow characteristics is conducted at Reynolds number (Re) = 2100. Additionally, simulation is extended to cover Re, i.e., Re = 100, 500, and 10000. The simulation results show that cylinder with CR = 0.1 outperforms all other cases by enabling a drag reduction of about 60 % at Re = 10(4). Drag has an inverse relationship with the wake closure length. Time-averaged coefficient of pressure, streamlines, and vorticity contours are also discussed to better understand near-wake features and the physics of drag reduction.

키워드

Chamfer ratios; Diamond cylinder; Drag reduction; Square cylinder; 2 CIRCULAR-CYLINDERS; ROUNDED CORNERS; UNSTEADY-FLOW; HEAT-TRANSFER; REYNOLDS; WAKE; SIMULATION; FORCES; RADIUS
제목
Drag reduction for flow past a square cylinder through corner chamfering
저자
Nawaz, Muhammad Ahsan; Abubaker, Muhammad; Kumar, R. Ajith; Sohn, Chang-Hyun
DOI
10.1007/s12206-022-1015-8
발행일
2022-11
유형
Article
저널명
Journal of Mechanical Science and Technology
권
36
호
11
페이지
5501 ~ 5510