采用星烯改性细水雾对组合式灭火装置的灭火能力进行了实验研究

I. Pustovalov
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摘要

介绍。该研究项目的目的是研究一种碳纳米结构,即astralene,对使用精细喷洒的水扑灭石油产品火焰的过程产生的影响。材料和研究方法。研究的重点是用于油品灭火的模块化水雾装置中的灭火悬浮液。将纳米结构体积浓度为0.05 ~ 1.0%的黄芪烯改性蒸馏水作为灭火物质进行了研究。实验重点研究了灭火剂的密度、动态粘度、表面张力、汽化比热等热物理特性。此外,还进行了研究,以确定蒸发速率,喷雾灭火成分的液滴大小分布,以及扑灭油品模型点火源所需的时间。研究的结果。纳米结构的分散使灭火液体的密度和表面张力增加20.6%,当星烯的体积浓度等于0.25和0.5%时,汽化比热增加,在20°С温度下,动态粘度提高6.68 - 15.38%。对改性后的灭火剂液滴的蒸发速率进行了研究。结果表明,当纳米结构的体积浓度从0.05%增加到0.5%时,蒸发速率降低。当烯的体积分散达到0 ~ 0.25%时,液滴速度增加。然而,进一步增加黄芪烯的体积浓度至1.0%,导致其速度降低。使用实验室灭火装置确定灭火时间。灭火剂的液滴尺寸分布在20 ~ 160微米范围内。如果灭火组合物的星烯体积浓度为0.5%,则该装置的灭火能力最高。碳纳米结构对灭火成分的改性导致其热物理特性的改变。在涉及石油产品加工的设施中使用的装置中添加这种成分将增加其灭火能力。进一步的研究领域可能包括发展用于悬浮液和适应低温的黄芪烯稳定方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An experimental study of the fire extinguishing ability of modular fire extinguishing installations if astralene-modified water mist is used
Introduction. The aim of the research project is to study the effect produced by one type of carbon nanostructures, or astralenes, on processes of extinguishing oil product flame using finely sprayed water. Materials and research methods. The research is focused on fire extinguishing suspensions used in modular water mist installations for the fire extinguishing of oil products. Astralene-modified distilled water, having the volumetric concentration of nanostructures equal to 0.05–1.0 percent, was used as a fire extinguishing substance under research. The experiment was focused on the study of thermophysical characteristics of fire extinguishing liquids, such as density, dynamic viscosity, surface tension, specific heat of vaporization. Also, studies were carried out to identify the rate of evaporation, the distribution of droplet sizes of sprayed fire extinguishing compositions, and the time needed to extinguish the model source of ignition of oil products.Research results. The dispersion of nanostructures of fire-extinguishing liquids allows to increase their density, surface tension by 20.6 %, increase the specific heat of vaporization if the volumetric concentration of astralenes is equal to 0.25 and 0.5 %, and boost the dynamic viscosity by 6.68–15.38 % at the temperature of 20 °С. The research was carried out to find the rate of evaporation of droplets of the modified fire-extinguishing liquid. It was found that an increase in the volumetric concentration of nanostructures from 0.05 to 0.5 % causes reduction in the evaporation rate.The droplet speed increases if the volumetric dispersion of astalenes goes up to 0 to 0.25 %. However, a further increase in the volumetric concentration of astralenes to 1.0 % causes a reduction in their speed. The extinguishing time was identified using a laboratory fire extinguishing installation. The distribution of droplet sizes of fire-extinguishing compositions is in the range of 20 to 160 microns. The fire extinguishing capacity of the installation was highest if a fire extinguishing composition had a 0.5 % volumetric concentration of astralenes.Conclusions. The modification of a fire extinguishing composition by carbon nanostructures leads to a change in its thermophysical characteristics. The addition of this composition to the installation, used at facilities involved in the processing of petroleum products, will increase its fire extinguishing ability. Further areas of research may include the development of astralene stabilization methods for suspensions and adaptation to low temperatures.
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