Evaluation model of energy saving potential of green buildings by entropy weight method

Hong Chai, Yibo Zhang
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Abstract

To estimate the subjective and objective weights of each index, the entropy weight approach is integrated with AHP in light of the current issues with building energy conservation and sustainable development. The study found that among the four indicators, the proportion of environmental sustainability is 48.19%, which has the most significant impact on the energy-saving potential and sustainable development efficiency of buildings. Among them, the weight value of the environmental load capacity index is 0.1104. On this basis, the cloud model is used for qualitative and quantitative analysis, and a comprehensive model based on four first-class indicators is established. The study found that the evaluation value of this index showed a kind of volatility, with a peak of 1 and a maximum frequency of 0.6. Overall, it displayed “generic” and “good” traits, demonstrating that people did not give enough thought to the environment’s and system’s sustainability while pursuing economic and social sustainability. In conclusion, the evaluation method chosen in this study can solve the fuzziness and randomness better in the efficiency of energy conservation and sustainable development of green buildings. This method has a significant impact on the evaluation of real green buildings.
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基于熵权法的绿色建筑节能潜力评价模型
针对当前建筑节能与可持续发展的问题,将熵权法与层次分析法相结合,估算各指标的主客观权重。研究发现,在四项指标中,环境可持续性所占比例为48.19%,对建筑节能潜力和可持续发展效率的影响最为显著。其中,环境负荷能力指标权重值为0.1104。在此基础上,运用云模型进行定性和定量分析,建立了基于四个一级指标的综合模型。研究发现,该指标的评价值呈现出一种波动性,峰值为1,最大频率为0.6。总体而言,它表现出“一般”和“良好”的特征,表明人们在追求经济和社会可持续性的同时,没有充分考虑环境和系统的可持续性。综上所述,本研究选择的评价方法能够较好地解决绿色建筑节能与可持续发展效率的模糊性和随机性。该方法对真实绿色建筑的评价具有重要意义。
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