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IMPLEMENTATION CHALLENGES AND SOLUTIONS FOR HOMOGENOUS CHARGE COMPRESSION IGNITION COMBUSTION IN DIESEL ENGINES

机译:柴油机均质充量压缩点火燃烧的实施挑战和解决方案

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Homogenous charge compression ignition (HCCI) combustion in diesel engines can provide for cleaner operation with ultra-low NOx and soot emissions. While HCCI combustion has generated significant attention in the last decade, however, to date, it has seen very limited application in production diesel engines. HCCI combustion is typically characterized by earlier than top-dead-center (pre-TDC) phasing, very high pressure rise rates, short combustion durations and minimal control over the timing of the combustion event. To offset the high reactivity of the diesel fuel, large amounts of EGR (30 to 60%) are usually applied to postpone the initiation of combustion, shift the combustion towards TDC and alleviate to some extent, the high pressure rise rates and the reduced energy efficiency. In this work, a detailed analysis of HCCI combustion has been carried out on a high-compression ratio, single-cylinder diesel engine. The effects of intake boost, EGR quantity/temperature, engine speed, injection scheduling and injection pressure on the operability limits have been empirically determined and correlated with the combustion stability, emissions and performance metrics. The empirical investigation is extended to assess the suitability of common alternate fuels (n-butanol, gasoline and ethanol) for HCCI combustion. On the basis of the analysis, the significant challenges affecting the real-world application of HCCI are identified, their effects on the engine performance quantified and possible solutions to overcome these challenges explored through both theoretical and empirical investigations. This paper intends to provide a comprehensive summary of the implementation issues affecting HCCI combustion in diesel engines.
机译:柴油发动机中的均质增压压缩点火(HCCI)燃烧可提供超低NOx和烟尘排放的清洁运行。尽管HCCI燃烧在过去十年中引起了极大的关注,但迄今为止,它在生产型柴油机中的应用非常有限。 HCCI燃烧的典型特征是比上止点(TDC)提前定相,非常高的压力上升速率,较短的燃烧持续时间以及对燃烧事件正时的最小控制。为了抵消柴油的高反应性,通常使用大量的EGR(30%至60%)来推迟燃烧的开始,将燃烧移向TDC,并在一定程度上减轻高压上升率和降低的能量效率。在这项工作中,已经对高压缩比的单缸柴油机进行了HCCI燃烧的详细分析。已经凭经验确定了进气助力,EGR量/温度,发动机转速,喷射时间表和喷射压力对可操作性极限的影响,并将其与燃烧稳定性,排放和性能指标相关联。经验研究扩展到评估普通替代燃料(正丁醇,汽油和乙醇)对HCCI燃烧的适用性。在分析的基础上,确定了影响HCCI实际应用的重大挑战,量化了它们对发动机性能的影响,并通过理论和实证研究探索了克服这些挑战的可能解决方案。本文旨在提供影响柴油机HCCI燃烧的实施问题的综合摘要。

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