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Comparative study on seismic vulnerability of highway bridge with conventional and HyFRC piers

机译:常规和HYFRC桥墩公路桥梁地震脆弱性比较研究

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The vulnerability of bridges depends primarily on the seismic performance of its piers. This paper studies the seismic vulnerability of a bridge with conventional concrete and hybrid fibre reinforced concrete (HyFRC) pier. Combination of 1.0% steel fibres and 0.15% polypropylene fibres by volume fraction is adopted in the construction of HyFRC piers from the viewpoint of improved toughness. Hybrid testing of six bridge piers (three made of conventional concrete and three made of HyFRC) are carried out to obtain the limit-state capacities and numerical model of the bridge structure is calibrated using the experimentally obtained responses. Analytical fragility curves are developed using the calibrated numerical model for different damage states as a function of an engineering demand parameter that represents the ground motion. The damage states are decided based on the actual damages observed from the experimental investigation. The fragility curves show very clearly that at any damage state, the HyFRC piers are less vulnerable to earthquakes when compared to the bridge piers made of conventional concrete. The difference in probability of exceedance increases with an increase in the intensity of earthquake. Use of HyFRC in bridge piers can provide significant enhancement in seismic performance of bridges in earthquake-prone regions.
机译:桥梁的脆弱性主要取决于其码头的地震性能。本文研究了传统混凝土和杂化纤维纤维纤维桥的桥梁的地震脆弱性。从改进韧性的观点来看,采用由体积分数的1.0%钢纤维和0.15%聚丙烯纤维的组合。进行六个桥墩的混合测试(由常规混凝土制成的三个,由HYFRC制成),以获得使用实验获得的反应校准桥接结构的极限状态和数值模型。使用校准数值模型开发了分析脆性曲线,用于不同损坏状态的函数,作为代表地面运动的工程需求参数。根据从实验调查中观察到的实际损害,损害州决定。脆性曲线显然显示,在任何损坏状态下,与由传统混凝土制成的桥墩相比,HYFRC墩的易受群体变得不那么容易受到地震的影响。由于地震强度的增加,超越概率的差异增加。在桥墩中使用HYFRC可以在地震 - 易发地区的桥梁抗震性能方面提供显着提高。

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