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Effects of nozzle diameter on the spray characteristics of premix injector in burner system

机译:喷嘴直径对燃烧器系统中预混合喷射器喷雾特性的影响

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摘要

An essential component of the injector nozzle geometry is to see the results spray atomization and mixture formation of the fuel-air combustion to improve performance, and reduce pollution from a burner. Studies involving the injectors in the combustion burner are still in a small proportion, particularly in the premix injector type. Thus, this study involves the efforts to determine the appropriate diameter of the premix injector where the injector sprays characteristics is produced by using Computational Fluid Dynamics (CFD). Multiphase of the volume of fluid (VOF) cavitations flow in the nozzle is determined through steady simulation while Eulerian-Eulerian two-fluid approach is used for performing mixing of Jatropha oil and air. Further simulation is conducted using a spray with a discrete phase injection at the outflow hole injector nozzle. The investigation involves the modification of nozzle geometry on three different sizes of 0.8mm, 1.0mm and 1.5mm with the analysis focused on nozzle flow characteristics of the injector. The results indicate that a small changes in injector gives high impact to the spray and combustion of a burner. This shows the importance of nozzle dimensions which influences the nozzle flow and affects the spray characteristics, hence influence the combustion and emission of the burner system
机译:喷油嘴几何形状的基本组成部分是观察结果,以雾化和形成燃油-空气燃烧的混合物,以改善性能并减少燃烧器的污染。涉及燃烧燃烧器中的喷射器的研究仍然很少,特别是在预混合喷射器类型中。因此,这项研究涉及确定预混合喷射器的合适直径的工作,在该位置上,通过使用计算流体动力学(CFD)可以产生喷射器的喷雾特性。通过稳定的模拟确定喷嘴中流空的流体(VOF)体积的多相,而使用欧拉-欧拉二流体方法进行麻疯树油和空气的混合。在流出孔注入器喷嘴处使用具有离散相注入的喷雾进行进一步的模拟。该研究涉及对三种不同尺寸的0.8mm,1.0mm和1.5mm的喷嘴几何形状进行修改,而分析的重点是喷射器的喷嘴流动特性。结果表明,喷油器的微小变化会对燃烧器的喷雾和燃烧产生很大影响。这表明喷嘴尺寸的重要性,喷嘴尺寸影响喷嘴流量并影响喷雾特性,因此影响燃烧器系统的燃烧和排放

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