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A Multi-Criteria Model for the Comparison of Building Envelope Energy Retrofits

机译:建筑包络能量改造比较的多标准模型

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In light of the current EU guidelines in the energy field, improving building envelope performance cannot be separated from the context of satisfying the environmental sustainability requirements, reducing the costs associated with the life cycle of the building as well as economic and financial feasibility. Therefore, identifying the "optimal" energy retrofit solutions requires the simultaneous assessment of several factors and thus becomes a problem of choice between several possible alternatives. To facilitate the work of the decision-makers, public or private, adequate decision support tools are of great importance. Starting from this need, a model based on the multi-criteria analysis "AHP" technique is proposed, along with the definition of three synthetic indices associated with the three requirements of "Energy Performance", "Sustainability Performance" and "Cost". From the weighted aggregation of the three indices, a global index of preference is obtained that allows to "quantify" the satisfaction level of the i-th alternative from the point of view of a particular group of decision-makers. The model is then applied, by way of example, to the case-study of the energetic redevelopment of a former factory, assuming its functional conversion. Twenty possible alternative interventions on the opaque vertical closures, resulting from the combination of three thermal insulators families (synthetic, natural and mineral) with four energy retrofitting techniques are compared and the results obtained critically discussed by considering the point of view of the three different groups of decision-makers.
机译:在光在能源领域目前欧盟的指导方针,提高建筑围护结构性能不能满足下面的环境可持续发展的要求,减少与建设,以及经济和财务可行性的生命周期相关的成本的情况下分开。因此,识别“最佳”能量改造解决方案需要同时评估几个因素,因此成为几种可能的替代方案之间的选择问题。为了促进决策者,公共或私人的工作,充足的决策支持工具具有重要意义。从这种需求开始,提出了一种基于多标准分析“AHP”技术的模型,以及与“能源性能”,“可持续性性能”和“成本”相关的三种合成指标的定义。从三个索引的加权聚集,获得了全局偏好指标,从而从特定决策者组的角度来“量化”I-TH替代的满意度。举例来说,该模型将通过示例应用,以案例研究前工厂的能量重建,假设其功能转换。比较了由三种能量改造技术的三个热绝缘体家族(合成,天然和矿物质)的组合产生的不透明垂直封闭件的20个可能的替代干预,并且通过考虑三种不同群体的观点来讨论批判性讨论的结果决策者。

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