Key driving forces of energy consumption in a higher education institution using the LMDI approach: The case of the Universidad Autónoma de Chile.

IF 10.1 1区 工程技术 Q1 ENERGY & FUELS
Juan P. Laporte , Rocío Román-Collado , José M. Cansino
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Abstract

Energy consumption in universities is a crucial issue as they aim to balance growing operational demands with environmental sustainability. This study employs the Logarithmic Mean Divisia Index method to assess energy consumption variations at Universidad Autónoma de Chile from 2017 to 2022, demonstrating the method's efficacy and simplicity in decomposing energy use into its determinants. The analysis reveals a 19% increase in energy consumption, primarily fueled by heightened energy intensity from increased research activities and rising enrollment. However, weather conditions and infrastructural efficiencies have mitigated this increase. Notably, the 2020 remote learning period saw a 45% decrease in energy consumption, largely due to reduced energy intensity. This study validates the LMDI method for individual institutions and provides a clear, interpretable framework for understanding energy variations. It highlights the impact of the Chilean accreditation system, which indirectly induces energy consumption expansions in universities by requiring enlargements in gross floor area. The findings also emphasize the significant effect of weather on energy usage in extreme climates. Recommendations for Universidad Autónoma de Chile include implementing behavioral change programs, enhancing climate control, and lighting systems, conducting energy audits, pursuing building retrofitting, and considering a partial shift to remote learning to further reduce energy consumption.

利用 LMDI 方法研究高等教育机构能源消耗的主要驱动力:智利自治大学案例。
大学的能源消耗是一个至关重要的问题,因为大学的目标是在不断增长的运营需求与环境可持续性之间取得平衡。本研究采用了对数平均迪维亚指数法来评估智利自治大学从 2017 年到 2022 年的能源消耗变化,展示了该方法在将能源使用分解为其决定因素方面的有效性和简便性。分析结果表明,能源消耗增加了 19%,主要原因是研究活动增加和入学率上升导致能源强度增加。不过,天气条件和基础设施效率的提高缓解了这一增长。值得注意的是,2020 年远程学习期间的能耗下降了 45%,这主要是由于能源强度降低所致。这项研究验证了针对单个机构的 LMDI 方法,并为了解能源变化提供了一个清晰、可解释的框架。它强调了智利认证制度的影响,该制度通过要求扩大总建筑面积,间接促使大学扩大能耗。研究结果还强调了在极端气候条件下天气对能源使用的重要影响。对智利自治大学的建议包括:实施行为改变计划、加强气候控制和照明系统、进行能源审计、进行建筑改造,以及考虑部分转向远程学习,以进一步降低能耗。
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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来源期刊
Applied Energy
Applied Energy 工程技术-工程:化工
CiteScore
21.20
自引率
10.70%
发文量
1830
审稿时长
41 days
期刊介绍: Applied Energy serves as a platform for sharing innovations, research, development, and demonstrations in energy conversion, conservation, and sustainable energy systems. The journal covers topics such as optimal energy resource use, environmental pollutant mitigation, and energy process analysis. It welcomes original papers, review articles, technical notes, and letters to the editor. Authors are encouraged to submit manuscripts that bridge the gap between research, development, and implementation. The journal addresses a wide spectrum of topics, including fossil and renewable energy technologies, energy economics, and environmental impacts. Applied Energy also explores modeling and forecasting, conservation strategies, and the social and economic implications of energy policies, including climate change mitigation. It is complemented by the open-access journal Advances in Applied Energy.
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