Performance Assessment of A Residential Building Integrated Photovoltaic (BIPV) System in Dhaka City

M. M. Ali, Nur Jahan Beanta Sorower, Abu Niem Seum, Md. Shifain Mahathir Alvi, Rawnak Reza Raka, Mohaimenul Islam, Md. Mosaddequr Rahman
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Abstract

Residential buildings, being an unavoidable part of day-to-day life, can have an impactful subsidy to the Renewable Energy Source (RES). Therefore, in this work, the energy-focused outcome of integrating the BIPV (Building Integrated Photovoltaic) system into a pre-built residential building in Dhaka city has been assessed. To begin with, segmentation of the building into subsystems and incident energy estimation have been considered. The building encounters a total of 391.66 MWh of incident energy over the course of one year. Taking 17% panel efficiency and 32 % system losses into account, the system generates 45.80 MWh of electrical output energy per year without considering cloud impact. It is around 53 % higher than the energy requirement (21 MWh) of the building. The system remained grid independent for more than half a year. It can reduce the emission of carbon by about 20,751 kg. Assuming the longevity of the system to be 20 years, the financial analysis shows that the initial cost can be retrieved within 4 years. It demonstrates that the BIPV system can meet the energy demand of the studied building while reducing grid dependency and carbon emissions. .
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达喀市住宅建筑综合光伏(BIPV)系统性能评价
住宅建筑作为日常生活中不可避免的一部分,可以对可再生能源(RES)进行有效的补贴。因此,在这项工作中,将BIPV(建筑综合光伏)系统集成到达卡市的一座预建住宅建筑中,以能源为重点的结果进行了评估。首先,考虑了建筑物的子系统分割和入射能量估计。该建筑在一年的时间里总共遇到391.66兆瓦时的入射能量。考虑到17%的面板效率和32%的系统损耗,在不考虑云影响的情况下,该系统每年产生45.80兆瓦时的电力输出。这比建筑的能源需求(21兆瓦时)高出53%左右。该系统在半年多的时间里保持了电网独立。它可以减少约20,751公斤的碳排放。假设系统的使用寿命为20年,财务分析表明,初始成本可以在4年内收回。结果表明,BIPV系统在满足建筑能源需求的同时,降低了对电网的依赖和碳排放。
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