Structural health monitoring and FE modelling of the Suramadu Bridge in Indonesia

M. Salami, Arya Pamuncak, Iwan Zarkasi, B. Suhendro, B. Budiono, P. Suprobo, Irwanda Laory
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Abstract

Structural Health Monitoring (SHM) has received significant public attention due to its potential to optimise the maintenance, long-term reliability and life-cycle cost of infrastructure systems. The main goal of SHM is to identify, characterise and diagnose anomalous performance of structures, usually where the most common approach to attain this goal is by investigation of structural natural frequencies variations. However, not only structural degradations but also environmental conditions can change structural performance; therefore, decoupling natural frequency variations from operational conditions is essential. This paper reports on monitoring system and measurement data of the long-span cable-stayed Suramadu Bridge, in Indonesia. The main objective of this paper is to explore and report the environmental and operational conditions of the bridge for the first time. Also, a detailed finite element (FE) model has been developed to investigate the operational performance of the bridge under different environmental conditions. Results show that vertical modal properties of the Suramadu Bridge are less affected by ambient excitations in comparison with lateral/torsional modes.
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印尼苏拉玛杜大桥结构健康监测与有限元模拟
结构健康监测(SHM)由于具有优化基础设施系统维护、长期可靠性和生命周期成本的潜力而受到了公众的广泛关注。SHM的主要目标是识别、表征和诊断结构的异常性能,通常实现这一目标的最常见方法是研究结构的固有频率变化。然而,不仅结构退化,环境条件也会改变结构的性能;因此,将固有频率变化与运行条件解耦是至关重要的。本文报道了印度尼西亚苏拉玛杜大桥大跨度斜拉桥的监测系统和测量数据。本文的主要目的是首次对该桥的环境和运行状况进行探索和报道。此外,还建立了详细的有限元模型来研究桥梁在不同环境条件下的运行性能。结果表明,与横向/扭转模态相比,苏拉玛杜大桥的竖向模态受环境激励的影响较小。
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CiteScore
3.00
自引率
10.00%
发文量
48
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