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Economic vs environmental isocost and isoperformance curves for the seismic and energy improvement of buildings considering Life Cycle Assessment

机译:考虑生命周期评价

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摘要

A methodology to quantitatively assess the improvement of seismic and energy performance of masonry buildings through retrofitting interventions is here proposed. The approach is developed at mesoscale level, considering entire facades with openings and taking into account Life Cycle Assessment (LCA). The costs of retrofitting interventions that couple effects of seismic and thermal improvement (called integrated interventions/approaches) are different whether only the construction phase or the entire life cycle of the building is considered. Therefore, it is necessary to estimate at what extent it is correct to neglect LCA in the analysis of integrated approaches. In this paper, the analysis of three masonry facades is performed with and without LCA. Traditional (insulating panels, diatons, ferro-cement) and more innovative interventions (carbon and glass fiber reinforced polymer composites) are considered. For the comparison, isocost and isoperformance curves, which determine both the economic (Euros) and environmental costs (kg CO2eq) for each intervention, are discussed. The comparison shows the necessity of always considering LCA for a reliable assessment: some retrofitting interventions are the most expensive in the construction phase but they result the most convenient in economic terms and in the amount of CO2eq emissions.
机译:提出了一种通过改造干预措施来定量评估砌体建筑物的地震和能量性能的改善方法。该方法是在Mesoscale级别开发的,考虑到具有开口的整个外观,并考虑到生命周期评估(LCA)。改造干预措施的成本对地震和热改善的影响(称为综合干预/方法)是不同的,无论是否仅考虑建筑物的施工阶段或整个生命周期。因此,有必要在分析综合方法时估计忽视LCA在多大程度上是正确的。在本文中,使用和没有LCA进行三个砌体外墙的分析。考虑了传统的(绝缘板,尖龙,铁水泥)和更具创新的干预(碳和玻璃纤维增​​强聚合物复合材料)。对于比较,讨论了对每种干预的经济(欧元)和环境成本(KG CO2EQ)的异粮和异常形象曲线。比较表明,始终考虑LCA以获得可靠的评估:一些改造干预措施是施工阶段中最昂贵的,但它们导致经济方面最方便和CO2EQ排放量。

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