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Dynamic Time History Response of Irregular Bridges

机译:不规则桥梁的动态时间历史响应

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Bridges are one of the most critical components of any transport infrastructure network, and their serviceability during earthquake is vital to ensure the safety of society. To be able to overcome bridge failure, code committees started to focus on different methods to design bridges under the effect of seismic forces. One of the challenges associated with Eurocode 8 and AASHTO-LRFD, which is not effectively addressed by code committees, is to withstand the failure of irregular bridges with unequal pier heights from seismic forces. EC8 currently uses "moment demand-to-moment capacity" ratios to ensure simultaneous failure of piers of bridges supported by piers of unequal heights, while AASHTO-LRFD relies on the relative effective stiffness of the piers. These regulations are not entirely valid, especially for bridges with piers of relative height of 0.5 or less, where in the case of earthquakes, they can experience a combination of shear and flexure failure modes. In this case, the shorter piers often result in a brittle shear failure, while the longer piers are most likely to fail due to flexure. This study aims to evaluate the adequacy of EC8 and AASHTO-LRFD design procedures for regular seismic behavior, by modeling various irregular bridges using shear-critical fiber-based beam-column elements. In this work the behavior of several irregular monolithic bridges is investigated. In addition, different methods of regularizing the bridge performance are examined in order to balance damage, with the ultimate aim of obtaining a simultaneous or near-simultaneous failure for all piers irrespective of the different heights and failure modes experienced.
机译:桥梁是任何运输基础设施网络中最关键的组件之一,地震期间的可维护性至关重要,以确保社会的安全。为了能够克服桥梁失败,代码委员会开始专注于不同的方法来设计地震力的效果下的桥梁。代码委员会没有有效解决与欧洲码头8和AASHTO-LRFD相关的挑战是承受来自地震力量不平等码头的不规则桥梁的失败。 EC8目前使用“时刻需求到时刻的能力”比率,以确保不平等高度桥墩支持的桥墩墩同时失效,而AASHTO-LRFD依赖于墩的相对有效刚度。这些法规并不完全有效,特别是对于具有0.5或更低的相对高度码头的桥梁,在地震的情况下,它们可以体验剪切和挠性故障模式的组合。在这种情况下,较短的码头通常导致脆性剪切失效,而较长的码头由于弯曲而最有可能失效。本研究旨在通过使用剪切临界光纤的光束柱元件来评估各种不规则桥梁的常规地震行为的EC8和AASHTO-LRFD设计程序的充分性。在这项工作中,研究了几个不规则整体桥的行为。此外,检查了不同的规则桥接性能的方法,以便平衡损坏,最终目的是为所有码头获得同时或接近同时的故障,而不管不同的高度和故障模式都有所经历的不同的码头。

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