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Atomization parameters and fire suppression characteristics of water mist in simulated roadway

机译:模拟巷道水雾雾化参数和灭火特性

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摘要

Water mist is considered to be one of the most effective ways to suppress fire in coal mines. The structure of an atomization device for water mist was determined based on preliminary research. By regulating the working conditions, including air pressure and water flow volume, we obtained water mist with varying particle size distributions, which proved to be the most important factor for fire suppression. Particle size distribution, characterized by a V 99 and V 50 , changed from 50 to 1600?μm during the experiment at a given air pressure (0.6–0.16?MPa) and water flow volume (0.6–1.0?m 3 /h). The particle size distribution along an axial line can be divided into a wavy flow zone and a fully atomizing zone. Based on the experiments, three types of particle size distributions, 98, 498 and 1013?μm, were used to test the fire-suppression characteristics of water mist in a simulated roadway with a self-built platform. The result showed that water mist could suppress fire rapidly and the highest temperature dropped from 205 to 10?°C within 30?s.
机译:水雾被认为是抑制煤矿中火灾最有效的方法之一。基于初步研究确定水雾雾化装置的结构。通过调节工作条件,包括空气压力和水流量,我们获得了不同粒度分布的水雾,这被证明是灭火的最重要因素。粒度分布,其特征在于V 99和V 50,在给定的气压(0.6-0.16μl)和水流量(0.6-1.0×m 3 / h)的实验期间从50至1600μm变为50至1600μm。沿轴线的粒度分布可以分成波状流量区和完全雾化区域。基于实验,使用三种类型的粒度分布,98,498和1013?μm,用于用自制平台测试模拟道路中水雾的灭火特性。结果表明,水雾可以快速抑制火力,最高温度从205到10?°C下降30?

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