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Seismic performance evaluation of existing RC structures based on hybrid sensing method

机译:基于混合传感方法的现有RC结构的地震性能评价

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The properties of structures such as stiffness and damping ratio are not a constant but varying in time due to material deterioration such as strength degradation, corrosion, crack and fatigue. The seismic performance of an existing structure is generally evaluated based on design drawings and visual inspection data without consideration of the effects of material deterioration. This paper introduces the process of material deterioration of existing reinforced concrete structures and evaluates its effects on their seismic performance by proposing the three-dimensional fragility curve based on hybrid sensing method. The curve shows the probability of failure of structures with respect to load and time. A bridge under the marine environment in service is utilized to demonstrate the changes of seismic performance because of chloride-induced corrosion of steel bars, which is the main cause of deterioration of existing reinforced concrete near-shore structures. The engineers can make their decisions more wisely for design and maintenance of RC structures based on the proposed method.
机译:诸如刚度和阻尼比的结构的性质不是恒定但在诸如强度降解,腐蚀,裂缝和疲劳的材料劣化而变化。通常基于设计图和目视检查数据评估现有结构的地震性能,而无需考虑物质劣化的影响。本文介绍了现有钢筋混凝土结构的材料恶化过程,并通过提出基于混合传感方法的三维脆弱曲线来评估其对抗震性能的影响。曲线显示了相对于负载和时间的结构失败的可能性。在服务中的海洋环境下的桥梁用于展示由于氯化物诱导的钢筋腐蚀而导致地震性能的变化,这是现有钢筋混凝土近岸结构恶化的主要原因。工程师可以根据提出的方法对RC结构的设计和维护更明智地进行决策。

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