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Ranking PCMs for building facade applications using multi-criteria decision-making tools combined with energy simulations

机译:使用多标准决策工具与能量模拟相结合的构建外立面应用的PCM

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摘要

The use of phase change materials (PCMs) in building envelopes has a potential to improve the energy performance of buildings. Even though Multi-Criteria Decision-Making (MCDM) tools have been widely applied to rank PCMs for various applications, the following issues still need more elaboration: a) How to account for the climate-related factors in the ranking of PCMs? b) How can the environmental footprint and chemical properties of various PCMs be considered in the ranking of PCMs? Therefore, this study presents a methodology for ranking phase change materials based on the AHP-TOPSIS and Fuzzy AHP -Modified Fuzzy TOPSIS methods combined with building energy simulations. Thermophysical (thermal conductivity, latent heat of fusion, phase change temperature, specific heat, density, cycling stability, supercooling), economic (initial cost), chemical (toxicity, flammability, corrosiveness), and environmental (recyclability, embodied energy) criteria were considered. The application of the methodology was demonstrated for eight cities of the tropical savanna climate zone. A comparative analysis was conducted, and the rankings obtained utilizing AHP-T0PS1S and Fuzzy AHP-Modified Fuzzy TOPSIS methods were found to be concordant. A sensitivity analysis indicated that the ranking developed by the proposed methodology has considerable robustness to alteration of weightings of criteria.
机译:在建筑包络中使用相变材料(PCM)有可能提高建筑物的能量性能。尽管多标准的决策(MCDM)工具被广泛应用于各种应用程序的秩,但以下问题仍然需要更多的详细说明:a)如何在PCM排名中解释气候相关因素? b)如何在PCM的排名中考虑各种PCM的环境足迹和化学特性?因此,本研究提出了一种基于AHP-TOPSIS和模糊AHP制定的模糊的模糊TOPSIS方法的排名相变材料的方法。热性(导热,熔化,相变温度,比热,密度,循环稳定性,过冷),经济(初始成本),化学(毒性,易燃性,腐蚀性)和环境(可回收性,体现能源)标准经过考虑的。对热带大草原气候区的八个城市证明了方法的应用。进行了比较分析,发现利用AHP-T0PS1和模糊AHP改性模糊Topsis方法获得的排名是一致的。灵敏度分析表明,由拟议方法开发的排名对标准的重量进行了相当大的稳健性。

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