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New sustainability assessment model for Intelligent Facade Layers when applied to refurbish school buildings skins

机译:智能门面层的新可持续性评估模型应用于翻新学校建筑皮革

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摘要

In regard to increasing reports toward severe comfort problems and high energy consumption by educational buildings in many countries, a sustainable refurbishment for these edifices is urgently required. Using Intelligent Facade Layers as a protective cover with a variety of possible energy sources would be an innovative rehabilitation alternative, which until now has had outstanding performances in other architectural applications.This research paper, overcoming the lack of comprehensive assessments on Intelligent Facades, develops a new model to quantitatively assess the sustainability of these facades when applied to optimize existing educational architecture. This model combines the multi-criteria decision-making MIVES method with the Delphi technique, relying on literature, real projects and sensitivity analyses. The model considers the main economic, environmental and social aspects in its steps: 1) model boundaries, 2) experts' qualification, 3) requirements tree, 4) weights assignment, 5) value functions, 6) sustainability indexes and 7) most sustainable alternatives. This model has been applied and validated in five Intelligent Facade Layers alternatives and three case studies at schools in Barcelona, Spain. This new approach proved highly reliable, showing the need for optimizations in both economic and environmental impacts applied to refurbishment scenarios. In this sense, future steps will design optimized alternatives.
机译:关于增加许多国家教育建筑物的严重舒适性问题和高能耗的报告,迫切需要为这些重叠进行可持续的翻新。使用智能门面层作为具有各种可能的能源的保护罩,是一种创新的康复替代方案,直到现在已经在其他建筑应用中具有出色的表现。本文克服了对智能门面缺乏全面评估,开发了一个新型模型,定量评估应用于优化现有教育架构时这些立面的可持续性。该模型将多标准决策维修方法与Delphi技术相结合,依靠文学,实际项目和敏感性分析。该模型认为其步骤中的主要经济,环境和社会方面:1)模型边界,2)专家的资格,3)要求树,4)权重分配,5)价值函数,6)可持续性指标和7)最可持续的备择方案。该型号已在西班牙巴塞罗那的五个智能门面层替代品和三个案例研究中应用和验证。这种新方法证明高度可靠,表明需要优化的经济和环境影响适用于翻新方案。从这个意义上讲,未来的步骤将设计优化的替代方案。

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