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Seismic-induced collapse simulation of bridges using simple implicit dynamic analysis

机译:使用简单隐式动力分析的桥梁地震倒塌模拟

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摘要

A simple implicit dynamic analysis method is extended to simulate the seismic-induced collapse of bridges. Nonlinear and discontinuous behaviors, such as material yielding and cracking, member damage, separation, falling and collision with other members, are considered in the analysis. An impact model with a contact detection scheme is developed to consider the impact response between beam elements representing bridge superstructures. Multiple-support excitation is considered. The Matsurube Bridge which collapsed in the 2008 Japan Iwate-Miyagi inland earthquake due to not only strong ground excitations but also the sliding of the rock mass beneath the bridge is analyzed for verifying the effectiveness of the analysis method. By reproducing the in-situ collapse situation, the failure mechanisms of the bridge are estimated. The results demonstrate that the simple implicit dynamic analysis is robust in simulating the collapse of bridges that exhibit highly nonlinear and discontinuous behaviors under extreme earthquakes.
机译:扩展了一种简单的隐式动力分析方法,以模拟地震引起的桥梁倒塌。分析中考虑了非线性和不连续行为,例如材料屈服和开裂,构件损坏,分离,掉落以及与其他构件的碰撞。建立了带有接触检测方案的冲击模型,以考虑代表桥梁上部结构的梁单元之间的冲击响应。考虑多支撑激励。分析了在2008年日本岩手-宫城内陆地震中倒塌的松鹤桥,这不仅是由于强烈的地面激励作用,而且还因为桥下岩体的滑动引起的,以验证该分析方法的有效性。通过再现原位倒塌情况,可以估算桥梁的破坏机理。结果表明,简单的隐式动力分析对于模拟在极端地震下表现出高度非线性和不连续行为的桥梁倒塌具有鲁棒性。

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