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Vulnerability analysis of RC buildings with wide beams located in moderate seismicity regions

机译:中等地震烈度区大梁钢筋混凝土建筑物的易损性分析

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摘要

A significant number of short-to-mid height RC buildings with wide beams have been constructed in areas of moderate seismicity of Spain, mainly for housing and administrative use. The buildings have a framed structure with one-way slabs; the wide beams constitute the distinctive characteristic, their depth being equal to that of the rest of the slab, thus providing a flat lower surface, convenient for construction and the layout of facilities. Seismic behavior in the direction of the wide beams appears to be deficient because of: (i) low lateral strength, mainly because of the small effective depth of the beams, (ii) inherent low ductility of the wide beams, generated by high amount of reinforcement, (iii) the big strut compressive forces developed inside the column-beam connections due to the low height of the beams, and (iv) the fact that the wide beams are wider than the columns, meaning that the contribution of the outer zones to the resistance of the beam-column joints is unreliable because there is no torsion reinforcement. In the orthogonal direction, the behavior is worse since the only members of the slabs that contribute to the lateral resistance are the joists and the façade beams. Moreover, these buildings were designed with codes that did not include ductility requirements and required only a low lateral resistance; indeed, in many cases, seismic action was not considered at all. Consequently, the seismic capacity of these structures is not reliable. The objective of this research is to assess numerically this capability, whereas further research will aim to propose retrofit strategies. The research approach consists of: (i) selecting a number of 3-story and 6-story buildings that represent the vast majority of the existing ones and (ii) evaluating their vulnerability through three types of analyses, namely: code-type, push-over and nonlinear dynamic analysis. Given the low lateral resistance of the main frames, the cooperation of the masonry infill walls is accounted for; for each representative building, three wall densities are considered. The results of the analyses show that the buildings in question exhibit inadequate seismic behavior in most of the examined situations. In general, the relative performance is less deficient for Target Drift CP (Collapse Prevention) than for IO (Immediate Occupancy). Since these buildings are selected to be representative of the vast majority of buildings with wide beams that were constructed in Spain without accounting for any seismic consideration, our conclusions can be extrapolated to a broader scenario.
机译:在西班牙地震程度中等的地区,已经建造了许多带有中梁的短到中高钢筋混凝土建筑,主要用于房屋和行政用途。建筑物采用带单向平板的框架结构。宽的横梁构成了独特的特征,其深度等于板坯其余部分的深度,因此提供了平坦的下表面,便于施工和布置设施。宽梁方向的抗震性能似乎欠佳,原因是:(i)横向强度低,主要是由于梁的有效深度较小,(ii)大量梁产生的固有固有的低延展性(iii)由于梁的高度低,在柱梁连接内部产生了很大的支柱压缩力;(iv)宽梁比柱宽的事实,这意味着外部区域的贡献梁柱节点的抗力是不可靠的,因为没有扭转加强。在正交方向上,由于平板的唯一影响侧向阻力的构件是托梁和立面梁,因此其性能会变差。而且,这些建筑物的设计规范不包括延性要求,仅要求较低的侧向阻力。实际上,在很多情况下,根本没有考虑地震作用。因此,这些结构的抗震能力是不可靠的。这项研究的目的是从数量上评估这种能力,而进一步的研究将旨在提出改造策略。研究方法包括:(i)选择代表大多数现有建筑物的三层和六层建筑物,以及(ii)通过三种类型的分析来评估其脆弱性,即代码类型,推送和非线性动力学分析。考虑到主框架的侧向阻力低,考虑了砌体填充墙的配合。对于每个有代表性的建筑物,均考虑了三种墙壁密度。分析结果表明,在大多数检查情况下,有关建筑物的地震行为均不充分。通常,目标漂移CP(防塌)的相对性能要比IO(立即占用)的性能低。由于这些建筑物被选为代表西班牙建造的绝大多数不考虑地震因素的宽梁建筑物的代表,因此我们的结论可以推论到更广泛的情况。

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