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Backward Flow of Hot Burned Gas Surrounding High-Pressure Diesel Spray Flame from Multi-hole Nozzle

机译:来自多孔喷嘴的高压柴油喷雾火焰围绕热烧气体的向后流动

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The backward flow of the hot burned gas surrounding a diesel flame was found to be one of the factors dominating the set-off length (also called the lift-off length), that is, the distance from a nozzle exit into which a diffusion flame cannot intrude. In the combustion chamber of an actual diesel engine, the entrainment of the surrounding gas into a spray jet from a multi-hole nozzle is restricted by the walls and adjacent spray jets, which induces the backward flow of the surrounding gas. A new momentum theory to calculate the backward flow velocity was established by extending Wakuri's momentum theory. Shadowgraph imaging in an optical engine successfully visualized the backward flow of the hot burned gas.
机译:发现柴油火焰周围的热烧气体的后向流动是主导熄灭长度(也称为剥离长度)的因素之一,即,从喷嘴出口到扩散火焰的距离不能侵入。在实际柴油发动机的燃烧室中,将周围气体夹带到来自多孔喷嘴的喷射射流的喷射射流由壁和相邻的喷射喷射器限制,其诱导周围气体的向后流动。通过延长Wakuri的动量理论,建立了一种计算后向流速的新动力理论。光学发动机中的影子图成像成功地可视化了热烧伤的气体的后向流动。

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