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SIMULATION AND WIND TUNNEL TESTING OF A SPECIAL RACKING SYSTEM FOR PV MODULES ON FLAT COMMERCIAL ROOFTOPS

机译:平板商业屋顶上光伏组件专用打孔系统的仿真和风洞测试

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Every year, more than 2.2GW of commercial photovoltaic (PV) systems are installed worldwide. Approximately 30% of these are mounted on flat rooftops. PV systems that are mounted on flat rooftops have two special requirements: they need to add as little weight as possible to the building and be exposed to as little wind load as possible. The paper analyses the impact of wind on a new racking system developed for PV modules for flat rooftops. Computational Fluid Dynamics (CFD) simulation was used to examine the impacts of wind loads on a rooftop mount system. Wind tunnel testing was also carried out on a model representing this rooftop racking system to further verify the results of the CFD simulation. Testing results indicate that the external section of the PV array will experience a greater wind load compared to its internal section. Calculations performed using the drag coefficient of the Tnnamount Ⅲ D10 racking system demonstrates the advantages of this design under high wind loading. The light weight racking system presents a tilt angle of 10 degrees and includes an optimized wind diffuser to protect the structure against high-wind events. The attributes of robustness and light weight, coupled with its simplicity of installation and packaging make the Trinamount Ⅲ D10 racking system a fast installing, non-penetrative PV mounting system very well suited for applications on flat rooftops.
机译:每年,全球安装超过2.2GW的商用光伏(PV)系统。其中约30%安装在平坦的屋顶上。安装在平坦屋顶上的光伏系统有两个特殊要求:它们需要为建筑物增加尽可能小的重量,并承受尽可能小的风荷载。本文分析了风对为平板屋顶光伏模块开发的新机架系统的影响。计算流体动力学(CFD)模拟用于检查风荷载对屋顶安装系统的影响。还对代表该屋顶机架系统的模型进行了风洞测试,以进一步验证CFD模拟的结果。测试结果表明,光伏阵列的外部部分与其内部部分相比将承受更大的风荷载。使用TnnamountⅢD10机架系统的风阻系数进行的计算证明了该设计在高风荷载下的优势。轻巧的货架系统具有10度的倾斜角度,并包括优化的风扩散器,以保护结构不受强风影响。 TrinamountⅢD10机架系统坚固耐用,重量轻,安装和包装简单,使其成为一种快速安装,非穿透性的PV安装系统,非常适合在平坦屋顶上使用。

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