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首页> 外文期刊>Journal of Constructional Steel Research >Implications of bidirectional interaction on nonlinear seismic response of steel piers
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Implications of bidirectional interaction on nonlinear seismic response of steel piers

机译:双向相互作用对钢墩非线性地震反应的影响

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The seismic performance assessment of bridges by nonlinear time history analysis using unidirectional spectrum-matched accelerograms is generally adopted in Japan's specifications. However, the simultaneous action of two horizontal components is known to induce a potentially higher inelastic response in steel piers relative to that under unidirectional excitation. In this background, a rising concern within research communities is the bidirectional effect on the risk of bridge failure or damage under a given seismic intensity during the service life of a bridge. In this study, the difference in the risk of steel pier damage/failure between unidirectional ground motion and bidirectional ground motion is assessed using seismic fragility. Fragility curves are constructed by subjecting a single steel pier with various geometric designs to a large number of earthquake ground motions using the incremental dynamic analysis methodology. The study indicates that the damage state of collapse is not changed by bidirectional excitations, whereas the use of bidirectional excitations in less damaging states reduces the bridge seismic performance and induces higher fragility. The response difference is quantified by introducing an equifragility factor. This factor is calculated as the ratio of intensity of the unidirectional input to the bidirectional input, which causes the same fragility caused by the unidirectional counterpart. The constant characteristic value of the equifragility factor provides useful information for considering the bidirectional effect in seismic design. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用单向频谱匹配的加速局的非线性时间历史分析桥梁的地震性能评估通常在日本的规格中采用。然而,已知两个水平部件的同时作用在单向激励下相对于该水平组分的同时作用诱导钢墩的潜在更高的非弹性响应。在这种背景下,研究社区的上升令人兴趣是对桥梁使用寿命期间的给定地震强度下的桥梁故障或损坏风险的双向影响。在这项研究中,使用地震脆性评估单向地面运动和双向接地运动之间的钢墩损伤/失效的风险差异。脆性曲线是通过使用增量动态分析方法的各种几何设计的单个钢墩进行各种几何设计来构造。该研究表明,双向激发没有改变崩溃的损伤状态,而双向激发在较少的破坏性状态下降低了桥接地震性能并诱导更高的脆弱性。通过引入等化性因子来量化响应差异。该因子被计算为单向输入的强度与双向输入的比率,这导致由单向对应物引起的相同脆弱性。等化性因子的恒定特征值提供了考虑地震设计中双向效果的有用信息。 (c)2019 Elsevier Ltd.保留所有权利。

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