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首页> 外文期刊>Journal of structural engineering >Evaluating Multiobjective Outcomes for Hazard Resilience and Sustainability from Enhanced Building Seismic Design Decisions
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Evaluating Multiobjective Outcomes for Hazard Resilience and Sustainability from Enhanced Building Seismic Design Decisions

机译:从增强的建筑抗震设计决策评估危害性和可持续性的多目标结果

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This study investigates the idea that green buildings should be designed to withstand higher extreme loads (loads associated with earthquakes or other hazards) to reduce the environmental impacts associated with posthazard repairs. This paper assesses the seismic performance and the associated environmental impact of 30 modern reinforced concrete buildings with varying lateral strengths and ductility capacities, considering the 4- and 12-story space and perimeter frames. The results show that the construction of stronger or more ductile (above-code) buildings requires higher upfront embodied carbon due to the larger structural members. The seismic performance was assessed probabilistically using nonlinear dynamic analysis and the seismic losses, both economic (in dollars) and environmental (in equivalent CO2 emissions), quantified for postearthquake damage. The findings suggest that the enhanced lateral strength lowers the postearthquake economic costs and the embodied carbon in comparison with weaker code-compliant or below-code designs. However, enhancing the ductility capacity does not reduce, and can increase, the seismic losses. For highly seismic regions, the enhanced lateral strength can significantly reduce the life-cycle embodied carbon losses enough to offset the higher upfront embodied carbon from constructing the larger structural members.
机译:本研究调查了绿色建筑应设计成承受更高的极端负荷(与地震或其他灾害相关的负荷)的想法,以减少与灾后维修有关的环境影响。考虑到4层和12层的空间和周长框架,本文评估了30座具有不同侧向强度和延性的现代钢筋混凝土建筑的抗震性能以及相关的环境影响。结果表明,由于结构构件较大,建造更坚固或更易延展的(以上代码)建筑物需要较高的前期体现碳。使用非线性动力分析对地震性能进行概率评估,并对地震损失(经济(以美元为单位)和环境(以等效的CO2排放量))进行量化,以评估地震后的破坏程度。研究结果表明,与较弱的规范合规性或规范性较低的设计相比,增强的横向强度降低了震后的经济成本和碳含量。但是,提高延展能力不会减少地震损失,反而会增加地震损失。对于高地震区域,增强的侧向强度可以显着降低生命周期内含碳量的损失,足以抵消较高的前期含碳量来构造较大的结构构件。

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  • 来源
    《Journal of structural engineering》 |2018年第8期|04018108.1-04018108.14|共14页
  • 作者单位

    Dewberry 8401 Arlington Blvd, Fairfax, VA 22031 USA;

    Univ Colorado Boulder, Dept Civil Environm & Architectural Engn, Boulder, CO 80309 USA;

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