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A numerical approach for the assessment of crosswind effects on barrier-protected trains running on bridges

A numerical approach for the assessment of crosswind effects on barrier-protected trains running on bridges
Autor(en): , , ORCID,
Beitrag für IABSE Congress: Structural Engineering for Future Societal Needs, Ghent, Belgium, 22-24 September 2021, veröffentlicht in , S. 233-240
DOI: 10.2749/ghent.2021.0233
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This paper introduces a new methodology to assess the influence of a windscreen on the crosswind performance of trains running on a bridge. Considering the difficulties encountered in both carrying...
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Bibliografische Angaben

Autor(en): (Politecnico di Milano, Department of Mechanical Engineering, Via La Masa 1, 20156, Milano, IT)
(Politecnico di Milano, Department of Mechanical Engineering, Via La Masa 1, 20156, Milano, IT)
ORCID (Politecnico di Milano, Department of Mechanical Engineering, Via La Masa 1, 20156, Milano, IT)
(Politecnico di Milano, Department of Mechanical Engineering, Via La Masa 1, 20156, Milano, IT)
Medium: Tagungsbeitrag
Sprache(n): Englisch
Tagung: IABSE Congress: Structural Engineering for Future Societal Needs, Ghent, Belgium, 22-24 September 2021
Veröffentlicht in:
Seite(n): 233-240 Anzahl der Seiten (im PDF): 8
Seite(n): 233-240
Anzahl der Seiten (im PDF): 8
DOI: 10.2749/ghent.2021.0233
Abstrakt:

This paper introduces a new methodology to assess the influence of a windscreen on the crosswind performance of trains running on a bridge. Considering the difficulties encountered in both carrying out wind tunnel tests that consider the vehicle speed or complete CFD analyses, a simplified CFD approach is here discussed. Instead of simulating simultaneously the windscreen plus the moving train, the numerical problem is split into two parts: firstly, a simulation of the windshield alone is used to extract the perturbed velocity profile at the railway location; secondly, this profile used as an inlet condition for the wind velocity acting on an isolated train. The method is validated against a complete train plus windshield simulation in terms of pressure distribution and aerodynamic force coefficients on the train, and flow streamlines. This approach opens to the possibility of evaluating the aerodynamic performance of a vehicle on bridges considering bridge and vehicle as separated. Wind velocity profiles measured on the bridge during a wind tunnel campaign could be used as the initial condition for numerical simulations on vehicles.

Stichwörter:
Brücke Zug CFD
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