Building Integrated Photovoltaic for Rooftop and Facade Application in Indonesia

Rima Kurnia Putri, Yulita Dyah Retno Widhi Astuti, Arum Kusuma Wardhany, C. Hudaya
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引用次数: 6

Abstract

Building sector is one of the biggest energy consumption along with residential, transportations and industrials. Building Integrated Photovoltaic (BIPV) can be an alternative to reduce energy consumption in the building and to secure the energy reserves. This study investigates the application of BIPV on the rooftop and facade of a high-rise building in Jakarta. Here, both technical and economic feasibility study are outlined. We employed the Sunny Web Design software and econometric spreadsheet program to calculate the energy generation and required specifications. BIPV rooftop produces greater energy yield compared to BIPV facade. This is because more radiation can be captured by BIPV rooftop on optimum azimuth and tilt angle. The BIPV reduce 5.97% of energy consumption. From the economic side, the total project cost and revenue of BIPV application is, respectively, 11.4 million USD and 1.2 million USD. This study can be broadened to develop BIPV in Indonesia.
印尼建筑屋顶和立面集成光伏应用
建筑行业与住宅、交通和工业一起是最大的能源消耗行业之一。建筑集成光伏(BIPV)可以作为降低建筑能耗和保证能源储备的一种替代方案。本研究调查了BIPV在雅加达一座高层建筑的屋顶和立面上的应用。在此,概述了技术和经济可行性研究。我们使用Sunny网页设计软件和计量经济电子表格程序来计算发电量和所需的规格。与BIPV立面相比,BIPV屋顶产生更大的能源产量。这是因为在最佳的方位和倾斜角度下,BIPV屋顶可以捕获更多的辐射。BIPV减少了5.97%的能源消耗。从经济方面来看,BIPV应用的项目总成本和总收益分别为1140万美元和120万美元。这项研究可以扩大到印度尼西亚的生物光伏发展。
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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