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Lift-Off Length in an Optical Heavy-Duty Diesel Engine: Effects of Swirl and Jet-Jet Interactions

机译:光学重型柴油机的起升长度:旋流和喷气相互作用的影响

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摘要

The influence of jet-flow and jet-jet interactions on the lift-off length of diesel jets are investigated in an optically accessible heavy-duty diesel engine. High-speed OH chemiluminescence imaging technique is employed to capture the transient evolution of the lift-off length up to its stabilization. The engine is operated at 1200 rpm and at a constant load of 5 bar IMEP. Decreasing the inter-jet spacing shortens the liftoff length of the jet. A strong interaction is also observed between the bulk in-cylinder gas temperature and the inter-jet spacing. The in-cylinder swirl level only has a limited influence on the final lift-off length position. Increasing the inter-jet spacing is found to reduce the magnitude of the cycle-to-cycle variations of the lift-off length. The measured lift-off lengths, at their stabilized positions, are combined with a previous database composed of variations of intake air temperature, motored top dead center density, fuel injection pressure, intake oxygen concentration and nozzle diameter. A non-linear regression model based on the power law form proposed by Siebers et al. is developed for describing the stabilized lift-off length of diesel jets as function of the ambient in-cylinder conditions, jet-flow and jet-jet interactions. The model has good accuracy. Although it is only validated for this particular engine environment it identifies the parameters that have the dominating effect on the lift-off length.
机译:在光学可访问的重型柴油机中,研究了射流和射流相互作用对柴油机射流升程长度的影响。高速OH化学发光成像技术用于捕获提离长度直至其稳定的瞬态演变。发动机以1200 rpm的转速和5 bar IMEP的恒定负载运行。减小喷嘴间的间距会缩短喷嘴的升起长度。在整体缸内气体温度和喷嘴间距之间也观察到强烈的相互作用。缸内涡流水平仅对最终提升长度位​​置产生有限的影响。发现增加喷嘴间的间距可以减小提离长度的周期变化的幅度。在其稳定位置处测得的升程长度与以前的数据库结合在一起,该数据库由进气温度,机动的上止点密度,燃料喷射压力,进气氧气浓度和喷嘴直径的变化组成。 Siebers等人提出的基于幂律形式的非线性回归模型。开发了用于描述柴油喷气机的稳定升空长度作为环境中缸内条件,射流和射流相互作用的函数。该模型具有良好的准确性。尽管仅针对特定的发动机环境对其进行了验证,但它确定了对升程长度有主要影响的参数。

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