首页> 外文期刊>International journal of engine research >Apparent effects of in-cylinder pressure oscillations and cycle-to-cycle variability on heat release rate and soot concentration under long ignition delay conditions in diesel engines
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Apparent effects of in-cylinder pressure oscillations and cycle-to-cycle variability on heat release rate and soot concentration under long ignition delay conditions in diesel engines

机译:在长时间点火延迟条件下,柴油机内缸内压力波动和周期变化对烟气释放速率和烟尘浓度的明显影响

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摘要

In diesel engines, long ignition delay due to cold in-cylinder conditions has been shown to lead to high cycle-to-cycle variability, as well as result in pressure oscillations due to rapid localised pressure rise rates from the resulting premixed combustion. These pressure oscillations appear as superimposed pressure waves on the engine indication graph, with an oscillation frequency corresponding to the first radial vibration mode. In the current study, the influences of pressure oscillations on heat release rate and the progress of in-cylinder soot concentration are investigated. Results showed that cycles where pressure oscillations occur reach a higher peak pressure than average or low pressure oscillation cycles, as a result of increased diffusion combustion rate and apparent mixing rate. Additionally, using in-cylinder soot pyrometry, cycles with high pressure oscillations were shown to exhibit increased soot oxidation rates. The combination of the two above-mentioned observed effects leads to the conclusion that pressure oscillations in direct injection diesel engines result in more rapid mixing due to increased turbulent intensity.
机译:在柴油发动机中,由于冷缸内条件而导致的长点火延迟已显示出高的循环间可变性,并且由于所产生的预混合燃烧的快速局部压力上升速率而导致压力振荡。这些压力振荡作为叠加的压力波出现在发动机指示图上,其振荡频率对应于第一径向振动模式。在当前的研究中,研究了压力振荡对放热速率和缸内烟灰浓度变化的影响。结果表明,由于扩散燃烧速率和表观混合速率的提高,发生压力振荡的周期比平均或低压振荡周期达到更高的峰值压力。另外,使用缸内烟灰高温法,高压振荡循环显示出增加的烟尘氧化速率。上面提到的两种观察到的效果的结合得出这样的结论,即直喷柴油机中的压力振荡会由于湍流强度的增加而导致更快速的混合。

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