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Factors influencing the repair costs of soft-story RC frame buildings and implications for their seismic retrofit

机译:影响软层钢筋混凝土框架房屋维修成本的因素及其抗震改造的意义

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This paper examines the factors affecting the repair costs following major earthquakes, of reinforced concrete (RC) frame buildings with non-ductile detailing typical of construction practices in Italy and other parts of the world during the 1950s and 1960s. Two configurations of a RC frame structure, one with full infills and the other with partial infills, are numerically studied. Results of incremental dynamic analyses confirm that the partial infill RC structures, in which soft-story mechanisms form in the open story, are more likely to collapse. However, by undertaking a loss estimation study for different scenarios it is shown that the lower losses that are expected due to the reduced damage of non-structural components in upper levels could be an advantage of soft-story buildings provided that the collapse propensity is reduced at the first level. It is further shown that losses in soft-story buildings will be strongly affected by the repair value of the structural and non-structural components at the soft-story level relative to other levels and the magnitude of P-Delta effects. These observations indicate that an effective retrofit strategy, that would reduce both monetary losses and the probability of collapse, could be achieved by increasing the deformation capacity at the soft-story level without altering the isolating effect that the soft-story mechanism provides to the levels above and without any further intervention in the stories above. The changes in losses resulting from such a conceptual retrofit solution are presented in order to illustrate the merits of such an approach, that should therefore become the focus of future research. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了1950年代和1960年代意大利和世界其他地区典型的非延性钢筋混凝土(RC)框架建筑物在大地震后影响维修成本的因素。数值研究了钢筋混凝土框架结构的两种配置,一种具有完全填充,另一种具有部分填充。增量动力分析的结果证实,在开放故事中形成软故事机制的部分填充RC结构更可能崩溃。但是,通过针对不同情况进行损失估算研究,结果表明,如果降低了倒塌倾向,那么由于高层非结构性构件的损坏减少而导致的预期较低损失可能是软故事建筑的优势。在第一级。进一步表明,相对于其他水平以及P-Delta效应的大小,软层建筑物中的结构和非结构组件的修复值将严重影响软层建筑物中的损失。这些观察结果表明,可以通过在不改变软故事机制对水平的隔离效果的情况下增加软故事水平的变形能力来实现有效的改造策略,该策略可以减少金钱损失和崩溃的可能性。以上内容,而无需对以上故事进行任何进一步干预。为了说明这种方法的优点,提出了由这种概念性改造解决方案引起的损失变化,因此,该方法应成为未来研究的重点。 (C)2015 Elsevier Ltd.保留所有权利。

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