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Experimental Studies on the Flammability and Fire Hazards of Photovoltaic Modules

机译:光伏组件的易燃性和火灾隐患的实验研究

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摘要

Many of the photovoltaic (PV) systems on buildings are of sufficiently high voltages, with potential to cause or promote fires. However, research about photovoltaic fires is insufficient. This paper focuses on the flammability and fire hazards of photovoltaic modules. Bench-scale experiments based on polycrystalline silicon PV modules have been conducted using a cone calorimeter. Several parameters including ignition time (tig), mass loss, heat release rate (HRR), carbon monoxide (CO) and carbon dioxide (CO2) concentration, were investigated. The fire behaviours, fire hazards and toxicity of gases released by PV modules are assessed based on experimental results. The results show that PV modules under tests are inflammable with the critical heat flux of 26 kW/m2. This work will lead to better understanding on photovoltaic fires and how to help authorities determine the appropriate fire safety provisions for controlling photovoltaic fires.
机译:建筑物上的许多光伏(PV)系统具有足够高的电压,有可能引起或引发火灾。但是,关于光伏火灾的研究还不够。本文着重于光伏模块的易燃性和火灾隐患。已经使用锥形量热仪进行了基于多晶硅PV组件的实验室规模的实验。研究了几个参数,包括点火时间(tig),质量损失,放热率(HRR),一氧化碳(CO)和二氧化碳(CO2)浓度。根据实验结果评估PV组件释放的火灾行为,火灾隐患和毒性。结果表明,被测光伏组件易燃,临界热通量为26 kW / m 2 。这项工作将使人们更好地了解光伏火灾,以及如何帮助当局确定控制光伏火灾的适当消防安全规定。

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