Health monitoring of Metsovo bridge using ambient vibrations
Health monitoring of Metsovo bridge using ambient vibrations
A real-time online structural health monitoring system for the Metsovo bridge, the highest R/C bridge of the Egnatia Odos Motorway in Greece, is outlined and then used to develop high fidelity dynamic finite element models for the bridge-foundation-soil system. Operational modal analysis software is used to obtain the modal characteristics of the bridge for the various sets of available vibration measurements during different construction phases of both the left and right bridge branches. These modal characteristics are then used to construct and calibrate detailed finite element models of the bridge, consisting of solid elements. A multi-objective structural identification method is used for estimating the parameters of the finite element structural models based on minimising the modal residuals. The method results in multiple Pareto optimal structural models with variability that depends on the fidelity of the model class employed and the size of measurement errors. The identified Pareto models are used for checking design assumptions, for exploring the adequacy of the different classes of finite element models, for identifying soil-structure interaction effects, and for estimating the response prediction variability.
1081-1088
DEStech Publications Inc.
Panetsos, P.
9da8645c-ca08-4db4-a110-3cdc8d6cdd84
Ntotsios, E.
877c3350-0497-4471-aa97-c101df72e05e
Papadimitriou, C.
3be78708-ed90-4a1f-b18e-5fe4ec2c8de6
Papadioti, D. C.
09ccab39-1bc8-44ec-adc7-3c00f15d1f7d
Dakoulas, P.
151dd8ff-02e0-4bcb-9725-49a8993618c4
1 December 2010
Panetsos, P.
9da8645c-ca08-4db4-a110-3cdc8d6cdd84
Ntotsios, E.
877c3350-0497-4471-aa97-c101df72e05e
Papadimitriou, C.
3be78708-ed90-4a1f-b18e-5fe4ec2c8de6
Papadioti, D. C.
09ccab39-1bc8-44ec-adc7-3c00f15d1f7d
Dakoulas, P.
151dd8ff-02e0-4bcb-9725-49a8993618c4
Panetsos, P., Ntotsios, E., Papadimitriou, C., Papadioti, D. C. and Dakoulas, P.
(2010)
Health monitoring of Metsovo bridge using ambient vibrations.
Casciati, Fabio and Giordano, Michele
(eds.)
In Structural Health Monitoring 2010 : Proceedings of the Fifth European Workshop on Structural Health Monitoring Held at Sorrento, Naples, Italy, June 28-July 4, 2010.
DEStech Publications Inc.
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
A real-time online structural health monitoring system for the Metsovo bridge, the highest R/C bridge of the Egnatia Odos Motorway in Greece, is outlined and then used to develop high fidelity dynamic finite element models for the bridge-foundation-soil system. Operational modal analysis software is used to obtain the modal characteristics of the bridge for the various sets of available vibration measurements during different construction phases of both the left and right bridge branches. These modal characteristics are then used to construct and calibrate detailed finite element models of the bridge, consisting of solid elements. A multi-objective structural identification method is used for estimating the parameters of the finite element structural models based on minimising the modal residuals. The method results in multiple Pareto optimal structural models with variability that depends on the fidelity of the model class employed and the size of measurement errors. The identified Pareto models are used for checking design assumptions, for exploring the adequacy of the different classes of finite element models, for identifying soil-structure interaction effects, and for estimating the response prediction variability.
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Published date: 1 December 2010
Venue - Dates:
5th European Workshop on Structural Health Monitoring 2010, , Naples, Italy, 2010-06-28 - 2010-07-04
Identifiers
Local EPrints ID: 430695
URI: http://eprints.soton.ac.uk/id/eprint/430695
PURE UUID: a046bcd9-35f7-4a63-b485-162a33a1e8ee
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Date deposited: 08 May 2019 16:30
Last modified: 20 Dec 2023 02:45
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Contributors
Author:
P. Panetsos
Author:
C. Papadimitriou
Author:
D. C. Papadioti
Author:
P. Dakoulas
Editor:
Fabio Casciati
Editor:
Michele Giordano
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