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Article detail · 2023

Machine Learning Approach for Flow Fields Over a Circular Cylinder Based on Particle Image Velocimetry Measurements

Measurement

YÖKSİS OpenAlex Open access · hybrid SJR Q1 JCR Q1 Citations 23 Top 10% Percentile 94.7% FWCI 3.72
Year
2023
ISSN
0263-2241
Type
article

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Abstract

English (OpenAlex)

Flow around a circular cylinder has been experimentally studied at Reynolds numbers of Re = 4 × 10 3 and Re = 8 × 10 3 using Particle Image Velocimetry (PIV). The Artificial Neural Network (ANN) method, a subset of machine learning, has been implemented to capture complex flow patterns and relationships within data to estimate the experimental results. Experimental and estimated results regarding instantaneous contour graphics for streamwise ( u ) and cross-stream ( v ) velocity components with velocity vector fields have been compared. Furthermore, drag coefficient ( C D ) and Strouhal number ( St ) have been validated. In flow features, instantaneous streamwise velocity components indicated a lower pressure zone in the wake region of the cylinder owing to flow separation. The ANN method has predicted the positions of the minimum velocity clusters with 3.2 % for Re = 8 × 10 3 as a mean relative error compared to the experimental results. Moreover, the average relative difference of 10.82 % between the experimental and the estimated results for the clusters with the minimum streamwise velocity components has been attained at Re = 4 × 10 3 and Re = 8 × 10 3 . Regarding the cross-stream velocity components, the mean relative difference values have been observed for the clusters with maximum values of 6.83 % and the clusters with minimum values of 3.66 %. Drag coefficients have also been obtained, and these values are very close as C D = 1.090 and C D = 1.084 for PIV and ANN methods at Re = 8 × 10 3 , respectively. Furthermore, St values of the circular cylinder are St = 0.216 at Re = 4 × 10 3 and St = 0.211 at Re = 8 × 10 3 , which agree with the results of the literature.

Topics

  • Fluid Dynamics and Vibration Analysis
  • Wind and Air Flow Studies
  • Aerodynamics and Fluid Dynamics Research

Primary topic Fluid Dynamics and Vibration Analysis

Authors

  1. MUHARREM HİLMİ AKSOY
  2. İLKER GÖKTEPELİ
  3. MURAT İSPİR KONYA TEKNİK ÜNİVERSİTESİ
  4. ABDULLAH ÇAKAN