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首页> 外文期刊>Journal of Cleaner Production >Life cycle assessment as a decision-making tool for selecting building systems in heritage intervention: Case study of Roman Theatre in Italica, Spain
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Life cycle assessment as a decision-making tool for selecting building systems in heritage intervention: Case study of Roman Theatre in Italica, Spain

机译:生命周期评估作为在遗产干预中选择建筑系统的决策工具:西班牙伊塔利卡的罗马剧院案例研究

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This paper develops a method based on life cycle assessment (LCA) as a useful decision-making tool for analysing the most suitable building system for intervention in heritage sites. It focuses on a case study based on the Roman Theatre heritage site in Italica (Spain), where several activities have taken place every two years since 2011 that require the addition of a reversible construction to support the lighting and electroacoustic elements, and improve the stage use. Based on the constraints on interventions in protected heritage settings, three suitable building options have been proposed: a standard system (option 1) and two innovative building systems (options 2 and 3). All three options are reversible, lightweight and quick assembly/disassembly systems. Option 1 is a standard aluminium system currently available on the market, while options 2 and 3 were originally created for this specific setting, using laminated wood beams and steel spatial lattices, respectively. All three lightweight construction systems that use the most common materials (aluminium, wood and steel) are compared. The LCA-based methodology aids in establishing the most suitable option for use in the construction of the case study. The LCA analysis includes the production, construction, deconstruction and end-of-life stages and two environmental indicators: global warming potential and cumulative energy demand. The results of the environmental impact of each option are compared, using the values obtained for option 1 (standard solution of frequent use) as references. In the case of option 3, the results demonstrate that the design decisions, supported by LCA, are determining factors in the choices made. The selected geometry, materials and construction system (production), assembly/disassembly process (construction/demolition) and recycling (end-of-life) reduce the environmental impact. Therefore, finally, option 3 was constructed. The results indicate that LCA can be of assistance in selecting the most suitable option for intervention at a heritage site. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文开发了一种基于生命周期评估(LCA)的方法,作为分析最适合遗产遗址干预的建筑系统的有用决策工具。它着重于基于意大利Italica的罗马剧院遗址的案例研究,自2011年以来每两年进行几次活动,这些活动要求增加可逆结构以支持照明和电声元素,并改善舞台采用。基于对受保护的遗产环境进行干预的限制,提出了三种合适的建筑方案:标准系统(方案1)和两种创新的建筑系统(方案2和3)。所有这三个选项都是可逆的,轻便的和快速的组装/拆卸系统。选项1是目前市场上可用的标准铝制系统,而选项2和3最初是针对此特定设置而创建的,分别使用层压木梁和钢质空间格子。比较了使用最常见材料(铝,木材和钢)的所有三种轻型建筑系统。基于LCA的方法有助于建立最合适的选项以用于案例研究的构建。 LCA分析包括生产,建造,解构和报废阶段以及两个环境指标:全球变暖潜力和累积能源需求。使用从选项1(频繁使用的标准解决方案)获得的值,比较每个选项对环境的影响结果。对于选项3,结果表明,由LCA支持的设计决策是决定选择的因素。选定的几何形状,材料和构造系统(生产),组装/拆卸过程(建造/拆除)和回收(报废)可减少对环境的影响。因此,最后构造了选项3。结果表明,LCA可以帮助您选择最合适的遗产遗址干预方案。 (C)2018 Elsevier Ltd.保留所有权利。

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