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Experimental research on the water mist fire suppression performance in an enclosed space by changing the characteristics of nozzles

机译:通过改变喷嘴的特性对封闭空间内水雾灭火性能的实验研究

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Water mist is an ideal way in enclosed spaces, where fire suppression efficiency is very important due to limited water and water damage to equipment. The purpose of this paper is to find a more effective way of fire suppression performance by changing characteristics of nozzles, taking into account extinguishing time, water consumption, toxic gas concentration, temperature decay and cover area. Two groups of pressure- swirl nozzles with the same flow rate and different spray cone angles were employed. The angle was adjusted by changing diameters and lengths of entrance, swirl chamber and orifice of nozzle. It was found that the cover area and the droplet size increased slightly with the spray angle. The fire tests results showed that the extinguishing time increased with the spray cone angle, and increased with the flow rate and the operating pressure decreasing. The temperature decay rate was improved by decreasing the angle or increasing the flow rate. In addition, with an increase in the extinguishing time, the concentration of O_2 decreased while the CO and CO_2 increased. However, the gas concentrations were not affected by the water mist discharge duration if it exceeded the extinguishing time. For a specific region and a certain amount of water, the performance can be improved by the approach: increasing the flow rate and the spray angle simultaneously and decreasing the discharge duration. The authors suggest setting proper flow rate and spray cone angle which match mutually, in order to maximize the utilization of water.
机译:水雾是封闭空间中的理想方式,在封闭空间中,由于水和设备对水的损害有限,灭火效率非常重要。本文的目的是通过考虑灭火时间,耗水量,有毒气体浓度,温度衰减和覆盖面积,通过改变喷嘴的特性来找到一种更有效的灭火方法。使用两组具有相同流速和不同喷雾锥角的压力旋流喷嘴。通过改变入口的直径和长度,涡流室和喷嘴的孔口来调节角度。发现覆盖面积和液滴尺寸随喷雾角度而略微增加。着火试验结果表明,灭火时间随喷雾锥角的增加而增加,随流量和工作压力的减小而增加。通过减小角度或增加流速来改善温度衰减率。另外,随着灭火时间的增加,O_2的浓度降低,而CO和CO_2的浓度升高。但是,如果气体浓度超过灭火时间,则其浓度不受水雾排放持续时间的影响。对于特定区域和一定量的水,可以通过以下方法提高性能:同时增加流量和喷雾角度并减少排放时间。作者建议设置相互匹配的适当流量和喷雾锥角,以最大程度地利用水。

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