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首页> 外文期刊>Indoor and built environment >Investigation of burning photovoltaic panels on a double-skin facade with ejecting flame from an adjacent room fire
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Investigation of burning photovoltaic panels on a double-skin facade with ejecting flame from an adjacent room fire

机译:研究在双层皮外墙上燃烧光伏面板并从相邻房间的大火中喷出火焰

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摘要

Integrating photovoltaic (PV) panels with building envelope or roof to give building- integrated photovoltaic system is now widely used for conservation of energy. PV panels are also installed on double-skin facade (DSF). The window ejecting flame caused by adjacent compartment fire to the cavity may lead to fire in the PV system. To understand the effect of burning PV panels on fire hazard, experimental investigation of burning PV panels in a DSF rig was reported in this paper. To simulate the PV-DSF compartment system, a model rig with a combustion chamber connected to an 8 m tall vertical shaft was built. A 3.5 MW gasoline pool fire of diameter 1.16 m was placed inside the chamber. Four PV panels were installed on the shaft model wall opposite to the chamber model with a vertical facade (back-layer) facing the cavity. Gas temperatures inside the facade cavity in cases with PV panels on the DSF were much higher than in cases without PV panels. The present study shows that burning PV panels inside the DSF cavity could aggravate the fire hazard scenario and should be considered seriously in building design and fire safety management.
机译:现在,将光伏(PV)面板与建筑物围护结构或屋顶集成在一起以提供建筑物集成的光伏系统已广泛用于节约能源。光伏面板也安装在双层玻璃幕墙(DSF)上。由相邻隔室着火引起的窗口向腔室喷出的火焰可能会导致PV系统着火。为了了解燃烧光伏面板对火灾的影响,本文报道了在DSF钻机中燃烧光伏面板的实验研究。为了模拟PV-DSF车厢系统,构建了一个模型箱,该模型箱的燃烧室连接到8 m高的竖井上。在室内放置了直径为1.16 m的3.5 MW汽油池火。在与腔室模型相对的竖井模型壁上安装了四个PV面板,并带有面向腔体的垂直立面(背层)。在DSF上装有PV面板的情况下,幕墙腔内的气体温度要比没有PV面板的情况高得多。本研究表明,在DSF腔体内燃烧PV面板可能会加剧火灾隐患,在建筑设计和消防安全管理中应认真考虑。

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