In this paper the model of an existing suspension bridge with steel deck is developed at the numerical level, from original data, in the ANSYS finite element code. The model is used to assess the efficiency, when the suspension bridge is excited by natural accelerograms, of control strategies specifically designed for wind loading. The control strategies implement passive and semi-active control dissipative devices, herein simulated by a widely adopted numerical model. The semi-active schemes employ a complete decentralization. © 2012 Taylor & Francis Group.

Seismic performance of a wind designed control strategy on a suspension bridge / Domaneschi, Marco; Martinelli, L.. - (2012), pp. 2310-2317. (Intervento presentato al convegno 6th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2012; tenutosi a Stresa, Lake Maggiore; Italy; nel 8 July 2012 through 12 July 2012;).

Seismic performance of a wind designed control strategy on a suspension bridge

DOMANESCHI, MARCO;
2012

Abstract

In this paper the model of an existing suspension bridge with steel deck is developed at the numerical level, from original data, in the ANSYS finite element code. The model is used to assess the efficiency, when the suspension bridge is excited by natural accelerograms, of control strategies specifically designed for wind loading. The control strategies implement passive and semi-active control dissipative devices, herein simulated by a widely adopted numerical model. The semi-active schemes employ a complete decentralization. © 2012 Taylor & Francis Group.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2664420
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