尼日利亚西南部某城市屋顶倾角对太阳能电池板能量输出的影响

M. Lawal, Abdulkabir Kayode Olawole
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摘要

这项工作建立了四个基于光伏(PV)的太阳能发电系统,这些系统具有可调节的太阳能电池板倾角支架。它还每五天改变一次太阳能电池板的倾角,同时记录电池板每天传递的能量。研究最后比较了不同角度记录的输出能量。这样做的目的是为了研究建筑屋顶倾角对安装在屋顶上的太阳能电池板的能量输出的影响。该装置由基于pv的太阳能发电系统组成,其倾角可调节,可容纳位于同一轴上的四块10w太阳能电池板。每个太阳能电池板通过万用表和充电控制器连接到一个42 Ah的电池。25瓦的负载用于在夜间对电池进行放电,以便在白天从面板上重新充电。万用表用于监测每天的供能。太阳能电池板的倾角分别为0°、25°、50°和75°,并在尼日利亚奥索博奥孙州立大学可再生能源实验室面向南方。通过将所有面板置于考虑的角度五天,每天记录数据,持续20天。结果表明,在设定的倾角下安装的太阳能电池板的平均能量分别为35.35 Wh、32.25 Wh、24.1 Wh和13.95 Wh。这意味着,对于特定的建筑能源需求,屋顶越陡(用于面板安装),需要的太阳能电池板数量就越多。结果还显示了基于屋顶倾角估算日平均日照时数(ASH)的各种表达式。例如,对于25°、50°和75°屋顶倾角,Osogbo及其周边地区的估计每日(ASH)分别为4.22小时、3.15小时和1.82小时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Roof Inclination on Solar Panel’s Energy Output in a South-Western Nigerian City
This work sets up four photovoltaic(PV)-based solar power systems with adjustable solar panel inclination angle stands. It also varies the inclination angle of the solar panel every five days while recording daily energy delivered by the panels. The study finally compares the output energy recorded for different angles. This was done with a view to studying the effect of building roof inclination on the energy deliverable by solar panel installed on it. The set up consists of PV-based solar power systems with adjustable inclination angle stands for four 10 W solar panels which are on the same axis. Each solar panel was connected to a 42 Ah battery through multimeter and charge controller. A 25 W load was used to discharge the battery at night to allow fresh charge from the panels during the day. The multimeter was used to monitor the daily energy delivered. The solar panels were subjected to 0°, 25°, 50° and 75° inclination angles and faced to South direction at the Renewable Energy Laboratory, Osun State University, Osogbo, Nigeria. Data were recorded daily for 20 days by subjecting all panels to the considered angles for five days. The results obtained showed that the average energy delivered by panels installed at the stated inclination angles are 35.35 Wh, 32.25 Wh, 24.1 Wh and 13.95 Wh, respectively. This means that, for a specific building energy need, the steeper the roof (intended for panel installation), the more the amount of solar panel required to meet such energy. The results also showed various expressions that can be used to estimate daily average sun hour (ASH) based on roof inclination. For example, the estimated daily (ASH) for Osogbo and environs can be taken to be 4.22 hour, 3.15 hour and 1.82 hour for 25°, 50° and 75° roof inclinations, respectively.
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