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Performance evaluation of ventilated and non-ventilated photovoltaic module frames.

机译:通风和不通风的光伏模块框架的性能评估。

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The electrical output of silicon photovoltaic (PV) cells decreases with increase in panel temperature. SunPower Corporation has designed ventilated photovoltaic module frames, which allows air to pass through back surface of PV laminate, thus reducing the operating temperature. The performance is measured of a SunPower module with ventilated frames and a module with a conventional non-ventilated module frame under identical operating conditions, and the increase in annual energy production by incorporating ventilated frames for photovoltaic modules is estimated for five locations in the US representing a range of climates. Up to a 3.5% increase in energy production is predicted for flush mounted ventilated modules. Savings up to {dollar}0.15/Wp is predicted. Offset mounting of non-ventilated modules shows almost the same energy production as the ventilated flush mount but at a greater cost. This study is an attempt to make PV more financially viable and enhance the operating efficiency of PV modules.
机译:硅光伏(PV)电池的电输出随着面板温度的升高而降低。 SunPower Corporation设计了通风的光伏模块框架,该框架使空气能够通过PV层压板的背面,从而降低了工作温度。在相同的运行条件下,对带有通风框架的SunPower模块和具有常规非通风模块框架的模块的性能进行了测量,并且估计在美国五个地方,通过将通风模块集成到光伏模块中,每年的能源产量增加各种气候。嵌入式安装的通风模块的能源生产预计将增加3.5%。预计可节省{dollar} 0.15 / Wp。非通风模块的偏移安装显示出与通风平齐安装几乎相同的能量产生,但成本更高。这项研究是为了使PV更具财务可行性并提高PV组件的运行效率。

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