Wind and Structures

Volume 26, Number 5, 2018, pages 331-341

DOI: 10.12989/was.2018.26.5.331

Couette-Poiseuille flow based non-linear flow over a square cylinder near plane wall

Rajesh Bhatt, Dilip K. Maiti, Md. Mahbub Alamand S. Rehman

Abstract

A numerical study on the flow over a square cylinder in the vicinity of a wall is conducted for different Couette-Poiseuille-based non-uniform flow with the non-dimensional pressure gradient P varying from 0 to 5. The non-dimensional gap ratio L (=H/a) is changed from 0.1 to 2, where H is gap height between the cylinder and wall, and a is the cylinder width. The governing equations are solved numerically through finite volume method based on SIMPLE algorithm on a staggered grid system. Both P and L have a substantial influence on the flow structure, time-mean drag coefficient , fluctuating (rms) lift coefficient (CL&#61602;), and Strouhal number St. The changes in P and L leads to four distinct flow regimes (I, II, III and IV). Following the flow structure change, the , CL&#61602;, and St all vary greatly with the change in L and/or P. The and CL&#61602; both grow with increasing P and/or L. The St increases with P for a given L, being less sensitive to L for a smaller P (< 2) and more sensitive to L for a larger P (>2). A strong relationship is observed between the flow regimes and the values of , CL&#61602; and St. An increase in P affects the pressure distribution more on the top surface than on bottom surface while an increase in L does the opposite.

Key Words

square cylinder; couette-poiseuille flow; aerodynamic characteristics; gap flow

Address

Rajesh Bhatt and Md. Mahbub Alam: nstitute for Turbulence-Noise-Vibration Interaction and Control, Shenzhen Graduate School, Harbin Institute of Technology, Shenzhen, China Dilip K. Maiti: Department of Applied Mathematics with Oceanology and Computer Programming, Vidyasagar University, Midnapur 721102, India S. Rehman: Center for Engineering Research, Research Institute, King Fahd University of Petroleum and Minerals, Dhahran-31261, Saudi Arabia