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Physical scaling of water mist fire extinguishment in industrial machinery enclosures

机译:工业机械外壳中水雾灭火的物理结垢

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Froude-based scaling relationships had previously been theoretically extended to, and experimentally validated in the laboratory for, water mist suppression of fires in open environment and in enclosures, which were shown applicable to gas, liquid and solid combustible fires. Before applying these relationships to real-world settings, their applicability needs to be further evaluated for the intended protection. This paper presents such an evaluation on scaling water mist fire extinguishment in an industrial machinery enclosure. In this evaluation exercise, a full-scale water mist protection set-up tested for a 260-m(3) machinery enclosure was selected as the benchmark. A 1/2-scale machinery enclosure test replica was then constructed, together with a 1/2-scale nozzle whose orifices were geometrically similar to those of the full-scale nozzle. Spray measurements indicated that the 1/2-scale spray closely met the scaling requirements, in terms of discharge K-factor, water mist flux, droplet velocity and droplet size distribution. Two spray fires and one pool fire, which were scaled with the respective full-scale fires, were used to challenge the water mist protection in the 1/2-scale enclosure. At least five replicated tests were conducted for each of the four tested fire scenarios. Overall, the instantaneous local gas temperature and oxygen concentration measured inside the 1/2-scale enclosure for each fire scenario agreed reasonably well with those measured at the corresponding locations inside the full-scale enclosure, meeting Froude modeling's requirement that scalar quantities be preserved in different scales. The fire extinguishment times obtained from the 1/2-scale tests for each fire scenario were also statistically consistent with that observed in the corresponding full-scale test. Based on the obtained results, it is concluded that, for machinery enclosures and other similar occupancies, the previously laboratory-validated scaling relationships for water mist fire suppression can be used to determine the fire extinguishing performance of a full-scale water mist protection in a 1/2-scale test facility.
机译:基于Froude的比例关系在理论上已经扩展到开放实验室和封闭环境中的水雾抑制火,并在实验室中进行了实验验证,证明可适用于气体,液体和固体可燃火。在将这些关系应用于实际设置之前,需要针对预期的保护进一步评估其适用性。本文提出了对工业机械外壳中水垢灭火的评估。在此评估活动中,选择了针对260 m(3)机械外壳测试的全面水雾防护设置作为基准。然后,构造一个1/2尺寸的机械外壳测试副本,以及一个1/2尺寸的喷嘴,该喷嘴的孔口在几何形状上与全尺寸喷嘴相似。喷雾测量结果表明,在排放K因子,水雾通量,液滴速度和液滴尺寸分布方面,1/2级喷雾非常符合结垢要求。根据各自的满刻度火灾缩放了两次喷火和一个水池火灾,以挑战1/2比例防护罩中的水雾防护。对于四种被测试的火灾场景,至少进行了五次重复测试。总体而言,在每种火灾情况下,在1/2刻度罩内测得的瞬时局部气体温度和氧气浓度与在满刻度罩内的相应位置处测得的瞬时局部气体温度和氧气浓度相当吻合,满足了Froude模型的要求,即应将标量保存在不同的规模。从每个火灾场景的1/2比例测试获得的灭火时间也与相应的全比例测试中观察到的统计时间一致。根据获得的结果,可以得出结论,对于机械外壳和其他类似用途,可以使用先前实验室验证的水雾灭火抑制比例关系来确定大型水雾防护装置的灭火性能。 1/2级测试设备。

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