This article deals with experimental investigation of air flow around in - line standing circular cylinders and influence of nearby standing hall on external wind pressure distribution. For vertical circular cylinders in a row arrangement only wind force coefficient is possible find in Eurocode. 1991-1-4. External wind pressure coefficient depends on wind direction and the ratio of distance and diameter b. Influence of nearby standing structure is not possible find in Eurocode. The series of parametric wind tunnel studies was carried out in Boundary Layer Wind Tunnel (BLWT) STU to investigate the external wind pressure coefficient in turbulent wind flow. We have compared the results of free in - line standing 3 circular cylinder and influence of hall on distribution of wind pressure at 3 height levels in turbulent wind flow and these results were compared with values in EN 1991-1-4. In this research, a series of parametric wind tunnel studies was carried out in Boundary Layer Wind Tunnel STU to investigate the effects of distance and roughness of cylinders in steady and turbulent wind flow.
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6 April 2022
INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS ICNAAM 2020
17–23 September 2020
Rhodes, Greece
Research Article|
April 06 2022
Experimental determination of wind pressure distribution for vertical cylinders in a row and the influence of surrounding structures
Ivana Veghova;
Ivana Veghova
a)
Slovak University of Technology in Bratislava, Faculty of Civil Engineering, Department of Structural Mechanics
, Radlinskeho 11, SK-810 05 Bratislava, Slovakia
a)Corresponding author: ivana.veghova@stuba.sk
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Olga Hubova
Olga Hubova
b)
Slovak University of Technology in Bratislava, Faculty of Civil Engineering, Department of Structural Mechanics
, Radlinskeho 11, SK-810 05 Bratislava, Slovakia
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a)Corresponding author: ivana.veghova@stuba.sk
AIP Conf. Proc. 2425, 040012 (2022)
Citation
Ivana Veghova, Olga Hubova; Experimental determination of wind pressure distribution for vertical cylinders in a row and the influence of surrounding structures. AIP Conf. Proc. 6 April 2022; 2425 (1): 040012. https://doi.org/10.1063/5.0081643
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