Investigation of liquid fuel combustion processes in an electrostatic fieldе

R. Mukanov, Y. Alyautdinova, S. Strelkov
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Abstract

Objective. The article presents the results of experimental studies on the effect of a high-potential electrostatic field on the combustion of liquid fuel. Method. Experimental studies were carried out on the developed laboratory installation, which makes it possible to ensure the combustion of liquid fuel in a high-potential electrostatic field with the possibility of changing the polarity. The change in the polarity of the applied voltage to the electrode system of the experimental setup led to an increase in the fuel burning rate in the first case, and to its attenuation in the second.Result. In this paper, studies have been carried out proving the effect of an electrostatic field on the burning rate and reducing the content of harmful components (soot and carbon monoxide) in fuel combustion purges. Based on the values of the fuel burning rate obtained as a result of the experiments, graphic dependences were constructed on the applied voltage, on which the areas of linear and non-linear changes in the combustion parameters were identified.Conclusion. The results of the research carried out can be used to create new highly efficient burners for liquid fuel boilers. The effect of reducing the burning rate can be used to create fire safety devices that block the spread of flame during a fire.
静电场中液体燃料燃烧过程的研究
目标。本文介绍了高势静电场对液体燃料燃烧影响的实验研究结果。方法。在开发的实验室装置上进行了实验研究,该装置可以确保液体燃料在高电位静电场中燃烧,并有可能改变极性。实验装置的电极系统所加电压极性的变化导致第一种情况下燃料燃烧速率的增加,而在第二种情况下燃料燃烧速率的衰减。本文研究了静电场对燃料燃烧净化中燃烧速度和降低有害成分(烟灰和一氧化碳)含量的影响。根据实验得到的燃料燃烧速率值,建立了与外加电压的关系图,并以此关系图确定了燃烧参数的线性和非线性变化区域。研究结果可用于制造新型高效液体燃料锅炉燃烧器。降低燃烧速率的效果可以用来制造防火安全装置,在火灾中阻止火焰的蔓延。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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