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Evaluating Code Criteria for Regular Seismic Behavior of Continuous Concrete Box Girder Bridges with Unequal Height Piers

机译:墩高不等的连续混凝土箱梁桥常规抗震性能评估准则

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The seismic design and response prediction of irregular bridges supported on piers of unequal heights—a commonly adopted solution when crossing steep-sided valleys—represent a particularly challenging problem that is yet to be effectively addressed by seismic design code provisions worldwide. From a force-based design perspective, shorter piers are subjected to increased ductility demand, and consequently damage tends to localize in these relatively stiff piers at increasing seismic hazard levels. This paper presents an investigation of the seismic response of a few schemes of a three-span case-study continuous bridge (commonly encountered in practice), featuring two unequal piers with relative heights of 0.5, 0.64, 0.75, and 0.86, respectively. Static pushover and time history (under incrementally scaled-up actual records) nonlinear inelastic analyses are performed using OpenSees to check the validity of Eurocode 8 (EC8) and recently proposed AASHTO-LRFD provisions for regular seismic behavior of ductile bridges dimensioned per a force-based design procedure. It has been demonstrated that satisfying the EC8 regularity condition does not necessarily result in a near-simultaneous failure of unequal piers at the extreme hazard level, especially for a low ratio between pier heights (≤ 0.5). It has been further concluded that regularity criteria in both provisions fall short of providing the absolute regular seismic behavior of the bridge under investigation. Finally, a new design criterion is introduced (and verified) herein and is promoted for bridges with unequal height piers but with the same cross-section dimensions as may be typically dictated by some compelling aesthetical and practical considerations. However, it is worth mentioning that pier behavior (and, hence, failure) is assumed to be governed by flexure, and no shear failure and buckling are considered.
机译:高度不等的墩上支撑的不规则桥梁的抗震设计和响应预测(穿越陡峭的山谷时通常采用的解决方案)代表了一个特别具有挑战性的问题,目前全世界的抗震设计规范仍未有效解决。从基于力的设计角度来看,较短的墩受到延展性要求的提高,因此,在地震危险等级不断提高的情况下,损坏倾向于集中在这些相对较硬的墩中。本文对三跨案例研究连续桥的几种方案(在实践中经常遇到)的地震响应进行了研究,其中两个桥墩的相对高度分别为0.5、0.64、0.75和0.86。使用OpenSees进行静态推覆和时间历程(在递增的实际记录下)非线性非弹性分析,以检查Eurocode 8(EC8)的有效性,以及最近提出的AASHTO-LRFD规定的按力计算尺寸的延性桥梁的定期地震行为。基于设计程序。已经证明,满足EC8规律性条件并不一定会导致在极端危险等级下不等墩墩几乎同时失效,尤其是墩墩高度之间的比率较低(≤0.5)时。进一步得出的结论是,这两个规定中的规则性标准均未提供所研究桥梁的绝对规则地震行为。最后,本文引入(并验证)了一种新的设计标准,并针对具有不等高的桥墩但具有相同的横截面尺寸(通常由一些引人入胜的美学和实践考虑所决定)的桥梁进行了推广。但是,值得一提的是,假定桥墩的行为(以及因此而造成的破坏)受挠曲支配,并且未考虑剪切破坏和屈曲。

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