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Simulation and Measurement of Transient Fluid Phenomena within Diesel Injection

机译:柴油注射内瞬态流体现象的仿真与测量

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Rail pressures of modern diesel fuel injection systems have increased significantly over recent years, greatly improving atomisation of the main fuel injection event and air utilisation of the combustion process. Continued improvement in controlling the process of introducing fuel into the cylinder has led to focussing on fluid phenomena related to transient response. High-speed microscopy has been employed to visualise the detailed fluid dynamics around the near nozzle region of an automotive diesel fuel injector, during the opening, closing and post injection events. Complementary computational fluid dynamic (CFD) simulations have been undertaken to elucidate the interaction of the liquid and gas phases during these highly transient events, including an assessment of close-coupled injections. Microscopic imaging shows the development of a plug flow in the initial stages of injection, with rapid transition into a primary breakup regime, transitioning to a finely atomised spray and subsequent vaporisation of the fuel. During closuring of the injector the spray collapses, with evidence of swirling breakup structures together with unstable ligaments of fuel breaking into large slow-moving droplets. This leads to sub-optimal combustion in the developing flame fronts established by the earlier, more fully-developed spray. The simulation results predict these observed phenomena, including injector surface wetting as a result of large slow-moving droplets and post-injection discharge of liquid fuel. This work suggests that post-injection discharges of fuel play a part in the mechanism of the initial formation, and subsequent accumulation of deposits on the exterior surface of the injector. For multiple injections, opening events are influenced by the dynamics of the previous injection closure; these phenomena have been investigated within the simulations.
机译:近年来,现代柴油燃料喷射系统的轨道压力大大提高了主要燃油喷射事件的雾化和燃烧过程的空气利用雾化。继续改进控制将燃料引入汽缸的过程导致侧重于与瞬态反应相关的流体现象。已经采用高速显微镜检查在开口,关闭和后注射事件期间可视化汽车柴油喷射器的近喷嘴区域周围的详细流体动力学。已经进行了互补的计算流体动态(CFD)模拟以阐明液体和气相阶段在这些高瞬态事件期间的相互作用,包括对近耦合注射的评估。微观成像显示出在注射初始阶段中的塞流的发展,随着初级分解状态的快速过渡,转变为精细的雾化喷雾和随后的燃料蒸发。在喷射器闭合喷射器期间,具有旋转分离结构的证据以及不稳定的燃料燃料中的燃料中的韧带分成大的慢速液滴。这导致较早完全开发的喷雾所建立的显影火焰前线中的次优燃烧。模拟结果预测了这些观察到的现象,包括由于大的缓慢移动液滴和液体燃料的后喷射排出而导致喷射器表面润湿。这项工作表明,燃料的后喷射放电在初始形成的机构中发挥作用,以及随后在喷射器的外表面上的沉积物积累。对于多次喷射,开放事件受到先前注射闭合的动态的影响;这些现象已经在模拟中进行了调查。

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