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Assessment of the Seismic Behaviour of a Retrofitted Old R.C. Highway Bridge Through PsD TestingExperimental Research in Earthquake Engineering

机译:改装旧钢筋混凝土的抗震性能评估通过PsD测试的公路桥梁地震工程实验研究

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摘要

The RETRO project aims at studying the seismic behaviour of existing reinforced concrete (RC) bridges and the effectiveness of innovative retrofitting systems. A typical as-built RC highway viaduct, designed primarily for gravity loads, has been analysed experimentally. The objective of the laboratory test program is twofold: (1) improve the knowledge of the non-linear behaviour of RC framed piers without seismic detailing and (2) assess the effectiveness of seismic isolation systems as a structural mitigation measure. Two large scale framed piers with two and three levels were re-designed and tested using the PsD method with hybrid (analytical and experimental) simulation. Two test configurations were considered: (1) the as-built bridge layout and (2) the viaduct retrofitted by means of Friction Pendulm (FP) isolators. The seismic performance evaluation was carried out at two limit states, i.e. at serviceability and ultimate limit states. The experimental tests stressed the high structural vulnerability of the viaduct, confirmed by the extensive shear damage in the transverse beams and the fix-end rotation effects generated by the bond slip of plain steel bars in the columns embedded in the foundation. The effectiveness of the isolation system with FP devices was also demonstrated. Nevertheless, the friction of the FP devices is a critical response parameter which may vary significantly because of the pressure due to vertical loads, strong motion velocity and temperature. The reliable evaluation of the friction parameter is of paramount importance to prevent the onset of damage within the framed piers
机译:RETRO项目旨在研究现有钢筋混凝土(RC)桥梁的抗震性能以及创新改造系统的有效性。通过实验分析了主要用于重力载荷的典型的建成的RC公路高架桥。实验室测试程序的目标有两个:(1)提高对无地震细节的RC框架墩非线性行为的了解;(2)评估隔震系统作为结构缓解措施的有效性。重新设计了两个两层和三层的大型框架墩,并使用具有混合(分析和实验)模拟的PsD方法进行了测试。考虑了两种测试配置:(1)建成的桥梁布局;(2)借助摩擦摆式(FP)隔离器翻新的高架桥。地震性能评估是在两个极限状态下进行的,即在可使用性和极限极限状态下进行的。实验测试强调了高架桥的高结构易损性,这一点已得到证实,横梁受到了广泛的剪切损伤,而埋在地基中的普通钢筋的粘结滑移产生了固定端旋转效应。还展示了带有FP设备的隔离系统的有效性。然而,FP设备的摩擦力是一个关键的响应参数,由于垂直载荷,强大的运动速度和温度引起的压力,该参数可能会发生显着变化。对摩擦参数的可靠评估对于防止框架墩中损坏的发生至关重要。

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