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Comparison of traditional vs low-damage structural and non-structural building systems through a cost/ performance-based evaluation

机译:通过成本/性能的评估比较传统与低损伤结构和非结构构建系统的比较

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摘要

Innovative damage-mitigation technologies have been recently developed to improve the seismic performance of structural and non-structural elements. The combination of these solutions can lead to a high-performance and cost-efficient building system, capable of sustaining earthquakes with limited damage and reduced socio-economic losses. This article investigates the convenience of implementing damage-control solutions through a cost/performance-based evaluation of multi-story-reinforced concrete buildings, comprising alternative combinations of traditional vs low-damage technologies for both structural skeletons (frames, walls) and non-structural elements (heavy/light facades, heavy/light partitions, suspended ceilings). The significant benefits of the innovative systems are investigated through loss assessment studies, implemented using a practical approach based on numerical pushover analyses and the capacity spectrum method. The parametric analyses confirm that the integrated low-damage structural/non-structural system can lead to significant savings, in these specific cases, in the range of 150-300 euro/m(2) during the 50-year building-life and downtime reductions at ultimate limit state in the order of 2-7 months.
机译:最近已经开发出创新的损害缓解技术,以提高结构和非结构性元素的地震性能。这些解决方案的组合可导致高性能和成本效益的建筑系统,能够维持有限的损坏和减少社会经济损失的地震。本文通过对多层钢筋混凝土建筑的成本/性能的评估来调整损坏控制解决方案的便利性,包括传统与结构骨架(框架,墙壁)和非传统对低损伤技术的替代组合的替代组合结构元素(重/轻,重/轻隔断,悬挂天花板)。通过基于数值推进分析的实用方法和容量谱法实施,通过损失评估研究来研究创新系统的显着效益。参数分析确认,集成的低损坏结构/非结构系统可以在50年的建筑 - 生命和停机时间内的150-300欧元/米(2)范围内显着储蓄。在2-7个月的阶数减少终极极限状态。

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