设计学院屋顶乌达亚纳大学图书馆

Marcelinus Anggiat Situmorang, I. A. Dwi Giriantari, I. N. Setiawan
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引用次数: 2

摘要

屋顶太阳能光伏是减少二氧化碳排放和增加电能消耗的一种解决方案。根据2014年PP No.79,印尼承诺到2025年利用可再生能源总量的23%。在《国家能源总体计划》(RUEN)中,到2025年,印尼的新能源和可再生能源发电量目标为45吉瓦,其中太阳能发电量为6.5吉瓦(14%)。在这项研究中,我们将讨论太阳能屋顶光伏在Udayana大学图书馆大楼的设计。根据太阳镜模拟结果,在真实角度为20.60°和20.30°时,最多可安装84个太阳能组件,功率容量为28.1 kWp;在最佳角度为14.66°时,最多可安装66个太阳能组件,功率容量为22.1 kWp。根据HOMER仿真结果,真实角度光伏微网与电网的配置可产生83,253 kWh/年的电能,减排41.764%,而与电网最佳安装角度的太阳能屋顶光伏配置可产生79.775 kWh/年的电能,减排34.527%。根据荷马模拟的结果,以900卢比/千瓦时的能源销售价格进行了经济分析。这两种太阳能屋顶光伏设计是值得投资的,其中太阳能屋顶光伏设计的实际安装角度分别为20.60和20.30,可以在第17年收回初始投资成本,而太阳能屋顶光伏设计的最佳安装角度为14.66,可以在第20年收回投资成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PERANCANGAN PLTS ATAP GEDUNG PERPUSTAKAAN UNIVERSITAS UDAYANA
Solar Rooftop PV is one solution in reducing CO2 emissions and the increasing consumption of electrical energy. Based on PP No.79 of 2014, Indonesia is committed to utilizing 23% of the total renewable energy of the total by 2025. In the General National Energy Plan (RUEN), in 2025 Indonesia targets the capacity of electrical energy from new and renewable energy of 45 GW of which solar power of 6.5 GW (14%). In this research, we will discuss the design of Solar Rooftop PV in the Udayana University Library building. Based on the helioscope simulation results, at a real angle of 20.6o and 20.3o solar modules that can be installed as many as 84 units with a power capacity of 28.1 kWp while at an optimum angle of 14.66o, as many as 66 solar modules can be installed with power capacity of 22.1 kWp. Based on the results of the HOMER simulation, the configuration between the real angle PV mini-grid and the grid is able to produce energy of 83,253 kWh/year with an emission reduction of 41.764%, while the configuration of the Solar Rooftop PV with the optimum installation angle with the grid is able to produce energy of 79.775 kWh/year with a reduction in emissions of 34.527%. From the results of the HOMER simulation, an economic analysis was carried out with an energy selling price of Rp. 900/kWh. The two Solar Rooftop PV designs are worth investing in where the Solar Rooftop PV design with a real installation angle of 20.6o and 20.3o is able to return the initial investment costs in the 17th year while the Solar Rooftop PV design with an optimum installation angle of 14.66o able to return the investment cost in the 20th year.
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