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大长宽比平单轴光伏板风荷载试验研究
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Experimental Study on Wind Load of Flat Uniaxial Photovoltaic Panels with Large Aspect Ratio
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    摘要:

    针对大长宽比的平单轴光伏板风荷载特性展开风洞试验研究,分别考虑了单体和阵列布置形式、0°至60°下7种光伏板倾角和7个来流风向,分析了光伏板的最不利来流风向、单体模型和阵列模型的风荷载分布,讨论了阵列布置时风荷载的干扰效应,与四个国家或地区的抗风规范进行了对比并给出了分区体型系数建议值. 研究发现:0°与180°为光伏面板阻力和倾覆弯矩的最不利风向;局部体型系数的分布及大小、绕转轴的弯矩系数和整体体型系数受到光伏板倾角及来流风向的影响. 对于绕转轴倾覆弯矩系数,小倾角的平单轴光伏板相对于大倾角的平单轴光伏板数值更大,对于光伏面板阻力,大倾角的平单轴相对于小倾角的平单轴光伏板更不利. 局部体型系数分布沿来流风方向呈现梯度变化,气流分离导致迎风拐角位置处的局部风荷载发生剧烈变化且出现极大值.

    Abstract:

    Wind tunnel tests were carried out to study the wind load characteristics of flat uniaxial photovoltaic panels with large aspect ratios. The most unfavorable incoming wind direction of photovoltaic panels, effects of inclination angle, the wind load distributions of the isolated model, and the array models are analyzed, respectively, considering the arrangement form of the single cell and the array, seven kinds of photovoltaic panel inclination angles from 0° to 60°, and seven incoming wind directions. The interference effect on wind loads for array arrangement is discussed. The test results are compared with the wind resistance codes of four countries, and the recommended values of the wind force coefficient are given. The study found that 0° and 180° are the most unfavorable wind directions for photovoltaic panels and overturning bending moment. The overturning bending moment coefficient around the rotating axis, the overall wind force coefficient, and the distribution and magnitudes of the local wind force coefficient are affected by the inclination angle of the photovoltaic panel and the direction of the incoming wind. For the overturning bending moment coefficient around the rotating axis, the flat uniaxial photovoltaic panel with a small inclination angle has larger values compared with the flat uniaxial photovoltaic panel with a large inclination angle. For the entire wind force of the photovoltaic panel, the flat uniaxial photovoltaic panel with a large inclination angle is more severe. The local wind force coefficient distribution presents a gradient change, the largest local wind load is found on the windward corner, which changes dramatically due to airflow separation.

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王峰 ,王佳盈 ?,王子健 ,李加武 ,马俊 ,王俊 .大长宽比平单轴光伏板风荷载试验研究[J].湖南大学学报:自然科学版,2023,(7):130~139

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  • 在线发布日期: 2023-07-31
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