基于温室标准的BIPV性能评估:

Susan Susan, Dyah Kusuma Wardhani, Yusuf Ariyanto, D. M. Wonohadidjojo, Eric Harianto
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引用次数: 0

摘要

产生于多种来源,包括可再生的和不可再生的。从不可再生能源转向可再生能源是实现零净建筑的众多策略之一。在印度尼西亚,由于其丰富的可再生能源资源,特别是太阳能,这一战略是非常可行的。本研究提出了一个学校建筑作为拟议的案例。SCK Citra花园学校被选为试点项目,因为它可以获得太阳辐射和最小的遮阳条件。利用Helioscope软件在其屋顶上进行了BIPV建模,并计算了BIPV输出的电能。然后测量了BIPV能源输出对建筑物消耗的传统电能的替代百分比。这一比例与国家能源组合目标和温室气体标准进行了比较,以评估其在零净学校建筑方面的表现。结果表明,BIPV具有良好的性能。尽管替代比例仍低于国家能源结构目标,但超过了现场可再生能源工具的温室气体标准目标。
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 BIPV performance based on the Greenhouse Standard:
generated from a variety of sources, both renewable and nonrenewable. Switching from nonrenewable to renewable energy sources is one of many strategies that can be used to achieve net-zero buildings. In Indonesia, this strategy is very feasible due to its abundant renewable energy resources, particularly solar energy. This research presents a school building as the proposed case. The school, SCK Citra Garden, is chosen as the pilot project due to its access to solar radiation and its minimum shading conditions. Using Helioscope software, BIPV modelling was simulated on its roof, and the electrical energy output from BIPV was calculated. The substitution percentages of BIPV energy output for conventional electrical energy consumed by the building were then measured. This percentage was compared to the National Energy Mix target and Greenhouse Gas Standard to assess its performance towards net-zero school buildings. The result shows that BIPV has a good performance. Even though the substitution percentage is still below the national energy mix target, it exceeds the greenhouse gas standard target for on-site renewable energy tools.
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