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EXPERIMENTAL STUDY OF THE EFFECT OF FUEL PROPERTIES ON SPRAY PERFORMANCE OF ALTERNATIVE JET FUEL

机译:燃料特性对替代性喷气燃料喷雾性能影响的实验研究

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Increase in energy demand and stringent emission norms lay emphasis on the need for cleaner, alternative fuels. Application of Gas-to-Liquid (GTL) fuel, a synthetic fuel obtained from Fischer-Tropsch synthesis, as an alternate aviation fuel has been the subject of attention in recent years. This is mainly due to its cleaner combustion characteristics when compared to conventional jet fuel and the reduction of dependence on the crude oil supply. However, chemical and physical properties of the GTL are different from conventional jet fuels owing to the difference in their production methodology. The change in GTL fuel physical properties could potentially alter the atomization characteristics, which, in turn affects the evaporation, mixing, combustion, and finally the pollutant formation processes. Therefore, it is important to have a thorough understanding of the combustion precursors of GTL fuel to better understand the combustion and emission processes. A comprehensive evaluation of the microscopic spray characteristics of GTL and Jet A-1 fuels are carried out using a point-wise laser diagnostic technique, Phase Doppler Anemometry at atmospheric condition. The spray characteristics are investigated at several axial and radial locations of the spray. Results obtained clearly show that the influence of fuel properties on the spray characteristics at atmospheric condition is mostly observed near the nozzle exit, rather than in regions further downstream.
机译:能源需求的增加和严格的排放标准将重点放在对更清洁,替代燃料的需求上。近年来,从费-托合成法获得的合成燃料即天然气燃料(GTL)燃料作为替代航空燃料已成为关注的焦点。这主要是由于与常规喷气燃料相比具有更清洁的燃烧特性,并且减少了对原油供应的依赖。但是,由于GTL的生产方法不同,其化学和物理特性与常规喷气燃料不同。 GTL燃料物理性质的变化可能会改变雾化特性,进而影响蒸发,混合,燃烧以及最终形成污染物的过程。因此,重要的是要全面了解GTL燃料的燃烧前体,以更好地了解燃烧和排放过程。 GTL和Jet A-1燃料的微观喷雾特性的综合评估是使用点状激光诊断技术(大气环境中的相位多普勒风速仪)进行的。在喷雾的几个轴向和径向位置研究了喷雾特性。获得的结果清楚地表明,在大气条件下,燃料特性对喷雾特性的影响主要在喷嘴出口附近观察到,而不是在更下游的区域中。

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