消防安全和光伏装置研究项目

R. Backstrom, D. Dini
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引用次数: 38

摘要

UL LLC根据美国国土安全部(DHS)向消防员提供的援助赠款,审查了光伏(PV)系统的消防服务问题。这些问题包括消防员在缓解涉及光伏(PV)模块系统的火灾时容易受到电气和伤亡危险的影响。研究结果包括:1。由于水的应用造成的触电危险取决于电压、水的导电性、距离和抑制流的喷射方式。2. 室外天气暴露额定电气外壳不能抵抗消防软管流的水渗透。3.如果绝缘表面完好且干燥,消防员的手套和靴子只能提供有限的电击保护。4. “关闭”数组不是打开断开开关的简单问题。5. 防水布提供不同程度的效果。6. 消防设备现场照明和暴露火灾可能会使光伏系统充分照明,造成锁定危险。7. 严重损坏的光伏阵列能够产生危险的条件。8. 工具损坏模块可能导致电气和火灾危险。9. 切断金属和塑料导管中的导体会导致电气和火灾危险。10. 如果阵列的模块或部分从屋顶滑落,响应人员必须远离屋顶线。11. 在阵列下但在屋顶以上的火灾可能会破坏屋顶材料和甲板,使火灾蔓延到阁楼空间。利用实验数据,提出了若干战术考虑。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Firefighter safety and photovoltaic installations research project
Under the United States Department of Homeland Security (DHS) Assistance to Fire Fighters grant, UL LLC examined fire service concerns of photovoltaic (PV) systems. These concerns included firefighter vulnerability to electrical and casualty hazards when mitigating a fire involving photovoltaic (PV) modules systems. Findings include: 1. The electric shock hazard due to application of water is dependent on voltage, water conductivity, distance and spray pattern of the suppression stream. 2. Outdoor weather exposure rated electrical enclosures are not resistant to water penetration by fire hose streams. 3. Firefighter’s gloves and boots afford limited protection against electrical shock provided the insulating surface is intact and dry. 4. “Turning off” an array is not a simple matter of opening a disconnect switch. 5. Tarps offer varying degrees of effectiveness. 6. Fire equipment scene lighting and exposure fires may illuminate PV systems sufficiently to cause a lock-on hazard. 7. Severely damaged PV arrays are capable of producing hazardous conditions. 8. Damage to modules from tools may result in both electrical and fire hazards. 9. Severing of conductors in both metal and plastic conduit results in electrical and fire hazards. 10. Responding personnel must stay away from the roofline in the event of modules or sections of an array sliding off the roof. 11. Fires under an array but above the roof may breach roofing materials and decking allowing fire to propagate into the attic space. Several tactical considerations were developed utilizing the data from the experiments.
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