POD Analysis of the Wake of Two Tandem Square Cylinders

Author:

Hao Jingcheng1ORCID,Ramalingam Siva1ORCID,Alam Md. Mahbub1ORCID,Tang Shunlin1ORCID,Zhou Yu1

Affiliation:

1. Centre for Turbulence Control, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China

Abstract

This study aims to investigate the wake of two tandem square cylinders based on the Proper Orthogonal Decomposition (POD) analyses of the PIV and hotwire data. The cylinder centre-to-centre spacing ratio L/w examined is from 1.2 to 4.2, covering the four flow regimes, i.e., extended body, reattachment, transition and co-shedding. The Reynolds number examined was 1.3 × 104. A novel Proper Orthogonal Decomposition (POD) technique (hereafter referred to as PODHW) is developed to analyse data from single point hotwire measurements, offering a new perspective compared to the conventional POD analysis (PODPIV) based on Particle Image Velocimetry (PIV) data. A key finding is the identification of two distinct states, reattachment and co-shedding, within the transition flow regime at L/w = 2.8, which PODPIV fails to capture due to the limited duration of the PIV data obtained. This study confirms, for the first time, the existence of these states as proposed by Zhou et al. (2024), highlighting the advantage of using PODHW for capturing intermittent flow phenomena. Furthermore, the analysis reveals how the predominant coherent structures contribute to the total fluctuating velocity energy in each individual regime. Other aspects of the flow are also discussed, including the Strouhal numbers, the contribution to the total fluctuating energy of the flow from the first four POD modes, and a comparison between different regimes.

Funder

CGN-HIT Advanced Nuclear and New Energy Research Institute

Publisher

MDPI AG

Reference61 articles.

1. Wake of Two Tandem Square Cylinders;Zhou;J. Fluid Mech.,2024

2. Heidari, M. (2016). Wake Characteristics of Single and Tandem Emergent Cylinders in Shallow Open Channel Flow. [Doctoral Dissertation, University of Windsor].

3. Marble, E., Morton, C., and Yarusevych, S. (August, January 30). Pod Analysis of the Wake Development of a Pivoted Circular Cylinder Undergoing Vortex Induced Vibrations. Presented at the Fluids Engineering Division Summer Meeting 2017, Waikoloa, HI, USA.

4. The Wake of Two Side-by-Side Square Cylinders;Alam;J. Fluid Mech.,2011

5. Modification of the Modal Characteristics of a Square Cylinder Wake Obstructed by a Multi-Scale Array of Obstacles;Higham;Exp. Therm. Fluid Sci.,2018

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