孟加拉国Ahsanullah科技大学屋顶太阳能光伏系统的设计与仿真

Suaib Al Sufi, Jannatul Fatima Kabir, Nahid-ur-Rahman Chowdhury, Abdullah Al Hadi
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引用次数: 0

摘要

可再生能源,特别是太阳能光伏发电已成为一个突出的电力来源。由于减少电费、对电网的依赖、减少碳排放,屋顶太阳能光伏装置受到了人们的关注。考虑到负荷模式,太阳能光伏对学术机构来说是一种非常有吸引力的能源。本研究探讨了Ahsanullah科技大学(AUST)学术校园的电力消耗和屋顶太阳能光伏装置的合理设计。还提出了经济分析,以确定LCOE,投资回收期和检查项目的财务可行性。根据之前的用电量、基于位置的天气数据、可用的屋顶总空间以及太阳能光伏系统的成本,分析发现,校园每年的用电量为1632兆瓦时,可用的屋顶面积为2950平方米,可以安装一个容量为330千瓦的并网光伏系统,以满足部分电力需求。该系统的年发电量为466.36兆瓦时,覆盖一年中不同月份总需求的不同百分比,资本成本为33万美元。本研究设计的优化系统每年将节省约5万美元的电费,可以作为解决可持续能源目标的明智选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Simulation of a Rooftop Solar PV System for Ahsanullah University of Science and Technology in Bangladesh
Renewable energy sources, especially solar PV has become a prominent source of electricity. Installation of rooftop solar PV has gained interest nowadays to reduce electricity bills, dependence on grid electricity, and carbon emissions. Considering the load pattern, solar PV is a very attractive energy source for academic institutions. This research explored the electricity consumption of Ahsanullah University of Science & Technology (AUST) academic campus and a plausible design for rooftop solar PV installation. An economic analysis is also presented to determine the LCOE, the payback period and to check the project's financial viability. According to the previous consumption, location-based weather data, available total rooftop space, and the cost of solar PV systems, the analysis revealed that the campus consumes 1632 MWh annually and the available rooftop area of 2950 square meters can house an on-grid photovoltaic system with a capacity of 330 kWp to fulfill partial electricity demand. The electricity production of the system will be 466.36 MWh per year, covering different percentages of the total demand in different months of the year with a capital cost of $330,000. The optimized system designed in this research would save around $50,000 in electricity bills annually and could operate as a smart option to address sustainable energy goals.
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