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How do liquid fuel physical properties affect liquid jet development in atomisers?

机译:液体燃料的物理特性如何影响雾化器中液体射流的发展?

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The influence of liquid fuel properties on atomisation remains an open question. The droplet sizes in sprays from atomisers operated with different fuels may be modified despite the small changes of the liquid properties. This paper examines experimentally the development of a liquid jet injected from a plain orifice in order to evaluate changes in its behaviour due to modifications of the liquid properties, which may influence the final atomisation characteristics. Two aviation kerosenes with similar, but not identical physical properties are considered, namely, standard JP8 kerosene as the reference fuel and bio-derived hydro-processed renewable jet fuel as an alternative biofuel. The corresponding density, dynamic viscosity, kinematic viscosity, and surface tension change by about +5%, -5%, -10%, and +5%, respectively, which are typical for "drop-in" fuel substitution. Three aspects of the liquid jet behaviour are experimentally considered. The pressure losses of the liquid jet through the nozzle are examined in terms of the discharge coefficient for different flowrates. The morphology of the liquid jet is visualised using high magnification Laser Induced Fluorescence (LIF) imaging. Finally, the temporal development of the liquid jet interfacial velocity as a function of distance from the nozzle exit is measured from time-dependent motion analysis of dual-frame LIF imaging measurements of the jet. The results show that for the small changes in the physical properties between the considered liquid fuels, the direct substitution of fuel did not result in a drastic change of the external morphology of the fuel jets. However, the small changes in the physical properties modify the interfacial velocities of the liquid and consequently the internal jet velocity profile. These changes can modify the interaction of the liquid jet with the surroundings, including air flows in coaxial or cross flow atomisation, and influence the atomisation characteristics during the changes of liquid fuels. (C) 2016 Author(s).
机译:液体燃料性质对雾化的影响仍然是一个悬而未决的问题。尽管液体特性发生了很小的变化,但使用不同燃料运行的雾化器的喷雾中的液滴尺寸仍可能会改变。本文通过实验检查了从普通孔口喷射的液体射流的发展情况,以评估由于液体性质的改变而导致的行为变化,这可能会影响最终的雾化特性。考虑了两种物理性质相似但不完全相同的航空煤油,即标准JP8煤油作为参考燃料和生物衍生的加氢处理的可再生喷气燃料作为替代生物燃料。相应的密度,动态粘度,运动粘度和表面张力分别变化约+5%,-5%,-10%和+ 5%,这对于“即插即用”燃料替代来说是典型的。实验考虑了液体射流行为的三个方面。通过喷嘴的液体射流的压力损失根据不同流量的排放系数进行检查。使用高倍率激光诱导荧光(LIF)成像可以观察到液体喷射流的形态。最后,根据对喷嘴的双帧LIF成像测量的时间相关运动分析,测量了液体喷嘴界面速度随时间的变化,该速度是距喷嘴出口的距离的函数。结果表明,对于所考虑的液体燃料之间物理特性的微小变化,燃料的直接替代并未导致燃料射流的外部形态发生急剧变化。但是,物理特性的微小变化会改变液体的界面速度,从而改变内部射流速度曲线。这些变化可以改变液体射流与周围环境的相互作用,包括同轴或错流雾化中的空气流,并在液体燃料变化期间影响雾化特性。 (C)2016作者。

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