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Full-scale burning tests on heat release rate of gasoline fire with water mist

机译:水雾对汽油燃烧放热率的全面燃烧试验

摘要

There are concerns on whether a water mist fire suppression system (WMFSS) can extinguish a fire quickly, though the system might be applied for suppressing or controlling the fire. It was also suggested in the literature that water mists might not always be capable of controlling a fire, even when working under the design conditions as there are many factors to be considered in designing WMFSS. This article will report on experiments on action of water mist discharged from low-pressure fire suppression system on gasoline fire. The objective is to observe more clearly the fire extinguishing mechanism. Full-scale tests were carried out at the new burning facility, PolyU/HEU Assembly Calorimeter at Lanxi, Harbin, Heilongjiang, China. There, heat release rates up to 5 MW can be measured by oxygen consumption calorimetry. Results on the heat release rate of liquid pool fires with and without discharging water mist; and the associated temperature profiles will be reported in this article. It was observed that if the flame shape did not change under the action of water mist, the burning process can be sustained although the heat release rate and temperature were both reduced. The downward push induced by discharging water mist is proposed to be one of the extinguishing mechanisms on liquid pool fires.
机译:尽管可能会应用水雾灭火系统(WMFSS)来抑制或控制火灾,但该系统还是可以迅速扑灭火灾。文献中还提出,即使在设计条件下工作时,水雾也不总是能够控制火势,因为在设计WMFSS时要考虑许多因素。本文将报告从低压灭火系统排放的水雾对汽油起火作用的实验。目的是更清楚地观察灭火机理。在中国黑龙江哈尔滨市的新燃烧工厂PolyU / HEU组装量热仪上进行了全面测试。在那里,可以通过耗氧量热法测量高达5 MW的放热率。有或没有排放水雾的液池火灾的放热率结果;以及相关的温度曲线将在本文中报告。观察到,如果火焰形状在水雾的作用下不改变,则尽管放热率和温度均降低,燃烧过程仍可维持。提出了由排出水雾引起的向下推动是灭火液池火灾的机制之一。

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