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Recurrent embodied energy and its relationship with service life and life cycle energy: A review paper

机译:回顾性体现能量及其与使用寿命和生命周期能量的关系

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Purpose - The recurrent embodied energy (REE) is the energy consumed in the maintenance, replacement and retrofit processes of a facility. The purpose of this paper was to analyze the relationship of REE with the service life and life cycle embodied energy. The amount of variation in the reported REE values is also determined and discussed. Design/methodology/approach - A qualitative approach that is known as the literature based discovery (LED) was adopted. Existing literature was surveyed to gather case studies and to analyze the reported values of REE. Findings - The reported values of REE showed considerable variation across referred studies. It was also found that the reported REE values demonstrated a moderate positive correlation with the service life but a very strong positive correlation with the life cycle embodied energy of both the residential and commercial facilities. Research limitations/implications - This review paper pointed out the importance of the maintenance and replacement processes in reducing the life cycle energy use in a facility. Future research could focus on performing case studies to evaluate this relationship. Practical implications - The findings highlight the significance of REE in reducing the life cycle energy impacts of a facility. As facility managers routinely deal with maintenance and replacement processes, they hold an important responsibility of reducing the life cycle energy. Originality/value - The findings of the paper would motivate the facilities management professionals to prefer long service life materials and components during the postconstruction phases of a built facility.
机译:目的-循环体现的能量(REE)是设施维护,更换和翻新过程中消耗的能量。本文的目的是分析稀土元素与使用寿命和生命周期内含能量的关系。还确定并讨论了报告的REE值的变化量。设计/方法/方法-采用了一种称为基于文献的发现(LED)的定性方法。对现有文献进行了调查,以收集案例研究并分析REE的报告值。研究结果-所报告的REE值在所引用的研究中显示出相当大的差异。还发现报告的REE值与使用寿命显示出适度的正相关,而与住宅和商业设施的生命周期所体现的能量具有非常强的正相关。研究的局限性/意义-该评论文件指出了维护和更换过程对减少工厂生命周期能耗的重要性。未来的研究可能集中在进行案例研究以评估这种关系。实际意义-研究结果突显了稀土元素在减少设施生命周期能源影响方面的重要性。在设施经理定期处理维护和更换过程时,他们承担着减少生命周期能耗的重要责任。原创性/价值-该论文的发现将激励设施管理专业人员在建筑设施的后期建设阶段中选择使用寿命长的材料和组件。

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