首页|温带季风城市温和气候下三种智能光伏支架对发电情况的影响分析

温带季风城市温和气候下三种智能光伏支架对发电情况的影响分析

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基于温带季风城市温和气候条件,通过气候数据模拟和实地试验数据采集,对比不同类型支架的长期发电性能和不同天气下的发电性能表现,评估不同支架类型下的发电能力,对不同季节不同天气情况下的发电量增益进行分析.结果表明,对于月均单瓦发电量,双轴智能支架为135.346Wh/W,15°斜单轴为123.643Wh/W,平单轴为114.981Wh/W;发电量增益随着月份、季节和天气变化明显;模拟数据与实际发电量对比结果为,15°斜单轴/平单轴发电量增益相差最大为晴天的0.032,双轴/平单轴发电量增益相差最大为晴天的0.015,数值均不大,考虑到实际不可能全是晴天,模拟与实测数据偏差还会进一步缩小.
Analysis of impact of three intelligent photovoltaic brackets on power generation in temperate monsoon cities under mild climate conditions
Based on the mild climate conditions of temperate monsoon cities,the long-term power generation performance with different types of brackets and their performance under different weather conditions are compared by simulating climate data and collecting field experimental data.The power generation capacity with different brackets is evaluated,and the power generation gain under different seasons and weather conditions is analyzed.The results show that for the monthly average single watt power generation,the dual axis intelligent bracket is 135.346Wh/W,the 15° inclined single axis is 123.643Wh/W,and the flat single axis is 114.981Wh/W.The power generation gain varies significantly with month,season,and weather conditions.The comparison between simulated data and actual power generation shows that the maximum difference in power generation gain between 15° inclined single axis/flat single axis is 0.032 on a sunny day,and the maximum difference in power generation gain between dual axis/flat single axis is 0.015 on a sunny day.Both values are not significant.And considering that it is impossible to have all sunny days in reality,the deviation between simulated and measured data will be further reduced.

temperate monsoon city with mild climateintelligent photovoltaic bracketpower generationcomparison between simulation and reality

胡晓阳、侯国猛、田磊、陈圣迪、张可佳

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中国国检测试控股集团股份有限公司,北京 100024

温带季风城市温和气候 智能光伏支架 发电情况 仿真与实际对比

2024

中国建材科技
中国建筑材料科学研究总院

中国建材科技

影响因子:2.418
ISSN:1003-8965
年,卷(期):2024.33(5)