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Life cycle carbon emission assessment of a multi-purpose university building: A case study of Sri Lanka

机译:多功能大学建筑的生命周期碳排放评估:以斯里兰卡为例

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Buildings are known to significantly affect the global carbon emissions throughout their life cycle.To mitigate carbon emissions,investigation of the current performance of buildings with regard to energy consumption and carbon emissions is necessary.This paper presents a process-based life cycle assessment methodology for assessing carbon emissions of buildings,using a multistorey reinforced concrete building in a Sri Lankan university as a case study.The entire cradle-to-grave building life cycle was assessed and the life span of the building was assumed as 50 years.The results provide evidence of the significance of operation and material production stages,which contributed to the total carbon emissions by 63.22% and 31.59% respectively.Between them,the main structural materials,concrete and reinforcement steel made up 61.91% of the total carbon emitted at the material production stage.The life cycle carbon emissions of the building were found to be 31.81 kg· m-2 CO2 per year,which is comparable with the values obtained in similar studies found in the literature.In minimizing the life cycle carbon emissions,the importance of identifying control measures for both building operation and material production at the early design stage were emphasized.Although the other life cycle stages only contributed to about 5.19% of the life cycle carbon emissions,they should also receive attention when formulating control strategies.Some of the recommendedstrategies are introducing energy efficiency measures in building design and operation,using renewable energy for building operation and manufacturing of materials,identifying designs that can save mass material quantities,using alternative materials that are locally available in Sri Lanka and implementing material reuse and recycling.This study is one of the first to undertake a life cycle carbon emissions assessment for a building in the Sri Lankan context,with the hope of facilitating environmentallyfriendly buildings and promoting sustainable construction practices in the country.
机译:众所周知,建筑物会在其整个生命周期中严重影响全球碳排放量。为减轻碳排放量,有必要对建筑物当前在能耗和碳排放量方面的性能进行研究。本文提出了一种基于过程的生命周期评估方法以一所斯里兰卡大学的多层钢筋混凝土建筑为例,评估建筑物的碳排放量。评估了从摇篮到坟墓的整个建筑生命周期,并假设该建筑的寿命为50年。证明了操作和材料生产阶段的重要性,分别导致总碳排放量的63.22%和31.59%。在两者之间,主要结构材料,混凝土和钢筋占材料排放碳总量的61.91%。生产阶段。发现该建筑物的生命周期碳排放量为每年31.81 kg·m-2 CO2。与文献中类似研究获得的值具有可比性。在最小化生命周期碳排放量时,强调了在早期设计阶段就确定建筑物运营和材料生产的控制措施的重要性。占生命周期碳排放量的5.19%,在制定控制策略时也应引起注意。一些建议的策略是在建筑设计和运营中引入节能措施,将可再生能源用于建筑运营和材料制造,确定设计通过使用斯里兰卡当地可用的替代材料并实现材料再利用和再循环,可以节省大量材料的数量。这项研究是针对斯里兰卡环境中的建筑物进行生命周期碳排放评估的第一批研究之一。希望促进环保建筑和公共关系遵守该国的可持续建筑规范。

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  • 来源
    《工程管理前沿(英文版)》 |2018年第3期|381-393|共13页
  • 作者

    Ramya KUMANAYAKE; Hanbin LUO;

  • 作者单位

    Department of Construction Management, School of Civil Engineering and Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China;

    Department of Construction Management, School of Civil Engineering and Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China;

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