A Study Using the Hybrid Fuzzy AHP&TOPSIS Method in the Conversion of a LEED-Certified Education Building into a Nearly Zero-Energy Building in a Cold Climate

Ali Celik, Bayram Sahin, Eyüphan Manay, Abit Balin
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Abstract

In cold climate regions, it is essential to design and manufacture energy-efficient buildings for both economic benefits and the reduction of environmental effects by controlling energy consumption. This study aimed to increase the cost-effective energy performance and approach the nearly zero energy building (nZEB) by taking the leadership in energy and environmental design (LEED) in the cold climate region of Turkey as a model. The results of single and mixed scenarios that increase energy efficiency were determined by making energy modelling of the building. By applying single and mixed energy efficiency scenarios, a maximum saving of 85.60 % per year in terms of primary energy, an improvement of 83.6 % in terms of global costs and a reduction of 86.4 % in CO2 emissions were obtained compared to the reference building. The payback period of the scenarios is between 3.8 years and 14.53 years. The most suitable single and mixed scenario was determined by a systematic hybrid model, in which the fuzzy analytical hierarchy process (FAHP) and technique for order of preference by similarity to ideal solution (TOPSIS) methods among multi-criteria decision-making methods are used together. The results showed that economic criteria were decisive in determining the most suitable scenario for cold climate regions. The results of this study revealed that there can be a realistic decision-support model for the creation of energy-efficient buildings for countries without the need for foreign certification.
混合模糊AHP& TOPSIS法在寒冷气候条件下leed认证教育建筑近零能耗改造中的应用研究
在寒冷气候地区,通过控制能耗来设计和制造节能建筑,既能获得经济效益,又能减少对环境的影响。本研究以土耳其寒冷气候地区领先的能源与环境设计(LEED)为模型,旨在提高具有成本效益的能源性能,接近近零能耗建筑(nZEB)。提高能源效率的单一和混合场景的结果是通过对建筑进行能源建模来确定的。通过应用单一和混合能源效率方案,与参考建筑相比,一次能源每年最多节省85.60%,全球成本提高83.6%,二氧化碳排放量减少86.4%。各方案的投资回收期在3.8年至14.53年之间。将多准则决策方法中的模糊层次分析法(FAHP)和理想解相似性偏好排序法(TOPSIS)相结合,建立系统混合模型,确定最适合的单一和混合方案。结果表明,经济标准在确定最适合寒冷气候地区的情景时起决定性作用。本研究的结果表明,对于不需要国外认证的国家来说,节能建筑的创建可以有一个现实的决策支持模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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