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Effects of nozzle shape on the flow characteristics of premix injector using computational fluid dynamics (CFD)

机译:使用计算流体力学(CFD)的喷嘴形状对预混合喷射器流动特性的影响

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摘要

The burner system is a patented, unique, higher-efficiency and fuel-injector system that works with a specially designed oil burner to create ultra-efficient combustion that reduces oil use, greenhouse gases and other harmful emissions. This research shows the injector nozzle geometries play a significant role in flow characteristics, atomization and formation of fuel-air mixture in order to improve combustion performance, and reducesome pollutant products from burner system. The aim of this research is to determine the effects of nozzle hole shape on flowcharacteristics of the premix injector by using CFD. Multiphase of volume of fluid (VOF) cavitating flow inside nozzles are determined by means of steady simulations and Eulerian-Eulerian two-fluid approach is used for performing mixing of Jatropha oil and air. Nozzle flow simulations resulted that cavitation area is strongly dependent on the nozzle hole shape. Conical hole with k-factor of 2 provides higher flow velocity and turbulent kinetic energy compared with conical hole with k-factor of 1.3 and cylindrical hole. The results show that the premix injector nozzle hole shape gives impact to the flowcharacteristics and indirectly affects the emission of the burner system
机译:燃烧器系统是获得专利的,独特的,更高效率的燃油喷射器系统,可与专门设计的燃油燃烧器配合使用,以产生超高效燃烧,从而减少燃油消耗,温室气体和其他有害排放物。这项研究表明,喷射器喷嘴的几何形状在流动特性,雾化和燃料-空气混合物的形成中起着重要作用,以改善燃烧性能并减少燃烧器系统产生的某些污染物。这项研究的目的是通过使用CFD来确定喷嘴孔的形状对预混合喷射器的流动特性的影响。通过稳定的模拟确定喷嘴内空化流体的多相体积(VOF),并使用欧拉-欧拉二流体方法进行麻疯树油和空气的混合。喷嘴流动模拟结果表明,气蚀面积在很大程度上取决于喷嘴孔的形状。与k因子为1.3的圆锥孔和圆柱孔相比,k因子为2的圆锥孔提供更高的流速和湍动能。结果表明,预混喷嘴的喷嘴孔形状会影响流量特性,并间接影响燃烧器系统的排放

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