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Effect of Cylinder Air Pressure and Hot Surface Temperature on Ignition Delay of Diesel Spray in a Constant Volume Combustion Chamber

机译:气缸气压和热表面温度对恒定燃烧室柴油喷射点火延迟的影响

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摘要

Present-day direct injection (DI) diesel engines with a high power density of displacement are not just promoting an expansion in the utilization of high-temperature resistant alloys in pistons yet, in addition, the expanded cylinder air pressures. When the temperature of the diesel engines piston exceeds a certain limit, it assumes a critical role at the start of sprays. The target of the present investigation was to look at the effects of cylinder air pressures (CAP) (10−25 bar) and high hot surface temperatures (HST) (350−450 °C). The ignition delay (ID) of pure diesel and that of diesel with Iftex clean system D (a cetane enhancer) are investigated experimentally. The experiments are performed by using a constant volume combustion chamber (CVCC) with a single hole pintle-type nozzle mounted on its head. A strong dependence of ID on the CAPs and HSTs was observed. A CAP of 25 bar is much inferior to the precombustion pressure of DI diesel engines; however, it is the case that combustion typical features are the same in spite of an inferior CAP, HST, and injection pressure. The ID tends to decrease to very small values with an increase in either of the two parameters. At a CAP of 25 bar, the measured ID of diesel with fuel additive is 45.8% lower than the pure diesel. Further, the ID of diesel with fuel additive at a 300 bar injection pressure and 25 bar CAP decreases at a rate of close to 0.2 ms/bar.
机译:具有高功率密度的直接喷射(DI)柴油发动机不仅促进了活塞中的高温耐合金的膨胀,还包括扩张的圆筒空气压力。当柴油发动机活塞的温度超过一定限度时,它在喷雾开始时呈现关键作用。本研究的目标是看汽缸空气压力(帽)(10-25巴)和高热表面温度(HST)(350-450°C)的影响。实验研究了纯柴油的点火延迟(柴油用IFTEX清洁系统D(十六烷增强剂)的点火延迟(ID)。通过使用恒定体积燃烧室(CVCC)与安装在其头部上的单孔针脚型喷嘴进行实验。观察到ID对帽和HSTS的强烈依赖。 25巴的盖子差不如DI柴油发动机的预核解压力;然而,燃烧典型特征的情况是尽管盖子,HST和喷射压力较差。在两个参数中的任何一个增加中,ID往往会减小到非常小的值。在25巴的盖子上,燃料添加剂的柴油的测量ID低于纯柴油的45.8%。此外,在300巴里注入压力下的燃料添加剂和25条盖子的柴油的ID以接近0.2ms /杆的速率降低。

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