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Experimental study on suppression of n-heptane pool fire with water mist under longitudinal ventilation in long and narrow spaces

机译:长窄空间纵向通风下水雾抑制正庚烷池火的试验研究

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This paper studies suppression of n-Heptane pool fire with water mist under different longitudinal ventilation velocities in a long and narrow space. Through the suppressing experiments with two different spraying positions and seven ventilation speeds, it is found that the extinguishment of fires has a close relationship with the fuel temperature. Moreover, the fuel temperature, when the fire is extinguished by spraying at different positions, is almost the same within the measurement ranges, and it tends to decrease as the wind speed rises. Mechanism studies show that the coupling effect of dilution and replacement of oxygen and fuel surface cooling is the main mechanism in n-Heptane fire extinguishment of water mist under longitudinal ventilation. In addition, the ability to efficiently cool the fuel plays a determinant role in the n-Heptane pool fire suppression.
机译:本文研究了在漫长而狭窄的空间中的不同纵向通风速度下的水雾抑制正庚烷池火。通过抑制两种不同的喷射位置和七个通风速度的实验,发现灭火的灭火与燃料温度有密切的关系。此外,当火在不同位置喷射时熄灭火灾时的燃料温度几乎相同,并且随着风速升高而趋于降低。机制研究表明,稀释和更换氧气表面冷却的耦合效果是纵向通风下水雾灭火的主要机制。此外,有效地冷却燃料的能力在正庚烷池火灾抑制中起着决定因子。

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