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首页> 外文期刊>International journal of engine research >The influence of pilot injection on high-temperature ignition processes and early flame structure in a high-speed direct injection diesel engine
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The influence of pilot injection on high-temperature ignition processes and early flame structure in a high-speed direct injection diesel engine

机译:先导喷射对高速直喷柴油发动机高温点火过程和早期火焰结构的影响

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摘要

Simultaneous high-speed natural luminosity and OH* chemiluminescence imaging is used to characterize high-temperature ignition processes in conventional diesel combustion with a pilot-main injection strategy in a single-cylinder, light-duty optical diesel engine. High-speed imaging provides temporally and spatially resolved information in terms of high-temperature ignition processes and flame structure during the combustion. Using these imaging measurements, the high-temperature inflammation and the diffusion flame development processes are analyzed. The chemiluminescence signal shows a hot, reactive mixture, which gradually decreases after the peak release of the pilot combustion and lasts long after the apparent heat release has ended. Therefore, when the reactive pilot mixture exists near the main injection jets, the high-temperature ignition of the main injection is apparently initiated through interactions with the reactive pilot mixture. High-temperature autoignition, another process by which ignition of the main injection occurs, is observed in main injection plumes where the chemiluminescence signal of the reactive pilot mixture becomes very weak or is absent at the start of main injection. As the reaction of the main injection continues, the non-premixed main injection jet structure is developed and the high-temperature reacting region expands throughout the jet.
机译:同时高速天然亮度和OH *化学发光成像用于在传统的柴油燃烧中表征常规柴油燃烧中的高温点火过程,在单缸,光型光学柴油发动机中的导频 - 主喷射策略。高速成像在燃烧期间的高温点火过程和火焰结构方面提供时间和空间分辨的信息。使用这些成像测量,分析了高温炎症和扩散火焰开发过程。化学发光信号显示出热的反应性混合物,该混合物在试验燃烧的峰值释放后逐渐降低,并且在表观热释放结束后持续时间长。因此,当在主注入喷射件附近存在反应式导频混合物时,通过与反应式试验混合物的相互作用显然引发主喷射的高温点火。高温自燃,在主注射羽毛中观察到主喷射的点火的另一个过程,其中反应式飞频混合物的化学发光信号变得非常弱或在主喷射开始时不存在。随着主要注射的反应继续,显影了未预混合的主要喷射射流结构,并且高温反应区域在整个喷射过程中膨胀。

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