太阳能光伏对大学建筑的评价:以校园可持续性为例

Antônia Sônia Alves Cardoso Diniz , Gisele Mol da Silva , Raphaela E. Alves Nunes , Vinícius Augusto Camatta Santana , Daniel Sena Braga , Cristiana Brasil Maia
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引用次数: 0

摘要

可再生能源在巴西的能源结构中占据主导地位,约占其总能源的82%,其中太阳能光伏发电(PV)现在是对电力部门的第二大贡献。国家消除碳排放的目标为高等教育机构提供了一个重要的角色,通过能源和教育领导塑造和影响未来的社会。本文主要通过在现有工程建筑结构中安装光伏系统的评估和设计,来提高巴西贝洛奥里藏特PUC Minas大学校园的可持续性水平。学生主导的案例研究提供了一个实施路线图,其中包括评估校园电力和能源消耗的协调方法,记录季节性太阳辐照度,评估太阳能可用的屋顶区域,模拟现有周围结构的日常和季节性阴影效应,根据巴西的规范和标准确定面板的位置。并计算光伏发电对取代电网供电的贡献,以及降低大学能源账单的潜力。结果是一个现实的光伏系统设计,满足排放和电力成本降低的目标,其增值方面是,领导团队与正在进行的能源工程课程参与者进行接口,实时接触研究和光伏技术。此外,该项目的价值分析旨在通过解决与清洁能源太阳能装置相关的联合国可持续发展目标(SDG)来提高大学的泰晤士高等教育排名。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of solar photovoltaics on university buildings: A case study toward campus sustainability
Renewable energy leads Brazil's energy mix at about 82 % of its total, with solar photovoltaics (PV) now the second largest contribution to the electric power sector. The country's target to eliminate carbon emissions provides a significant role for higher-education institutions that shape and influence future societies through energy and education leadership. This paper focuses on the improvement of the sustainability level of the PUC Minas university campus in Belo Horizonte, Brazil, through the assessment and design of a PV system into the existing engineering building structures. The student-led case study provides an implementation roadmap that includes a coordinated methodology of evaluating the campus power and energy consumption, documenting the seasonal solar irradiance, evaluating the solar-available rooftop areas, simulating the daily and seasonal shadowing effects from existing surrounding structures, determining the panel placements following Brazil's codes and standards, and calculating the contributions of the PV to displacing grid-supplied electricity and potential lowering of the University's energy bills. The result is a realistic PV system design that meets the emission and electricity-cost reduction objectives, with a value-added aspect is that the lead team interfaced with ongoing Energy-Engineering course participants for real-time exposure to the research and photovoltaics technology. Additionally, the value analysis of the project is aimed at improving the University's Times Higher Education Ranking by addressing the United Nations Sustainability Development Goals (SDG) that correlate with the clean energy solar installation.
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