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Evaluation of the Potential of Direct Water Injection in HCCI Combustion

机译:评价HCCI燃烧中直接注水的潜力

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Homogeneous charge compression ignition (HCCI) is a part load, low-temperature combustion process which operates at lean mixtures and produces ultra-low NO_X emissions. As opposed to SI engines that use a spark to control combustion timing, HCCI combustion is enabled by compression induced autoignition which is characterized by rapid global and spatial combustion yielding fuel efficiency benefits. This process is highly dependent on the in-cylinder state, including pressure, temperature and trapped mass. The absence of a direct combustion control proves to be a major challenge and results in unstable engine operation especially at the limits of the narrow operation range. In recent studies, direct water injection is used in HCCI combustion to stabilize combustion and increase the operation range. This paper outlines the thermodynamic influence and evaluation of the potential of water injection for HCCI combustion. Investigations were performed on two single cylinder research engines using different fuels to investigate the effect of direct water injection on HCCI combustion. In this work, the required energy to achieve autoignition is obtained using internal exhaust gas recirculation which is controlled via negative valve overlap. Steady state water injection timing, pressure and mass sweeps were performed to analyze the influence on HCCI combustion. Based on these single cylinder investigations, simulations were performed to simulate the effect of water on the amount of residual gas, in-cylinder temperature and rate of heat release. In addition, cyclic water injection investigations were performed, to separate the long term from the short term cooling effects. The results show a significant reduction of 44.5% in NO_X emissions when injecting water every cycle, and even a 12.2% reduction when injecting water every 2 cycles. This trade-off between water consumption, combustion phasing and NO_X emissions reduction can be useful for optimization in future control applications.
机译:均质充量压缩点火(HCCI)是工作在贫混合物,产生超低排放NO_X部分负荷,低温燃烧过程。而不是使用火花以控制燃烧正时SI发动机,HCCI燃烧是由压缩引起的自燃其特点是全球和空间快速燃烧产生燃料效率方面的好处启用。这个过程是高度依赖于在缸状态,包括压力,温度和捕集质量。不存在一个直接燃烧控制的证明是不稳定的发动机操作一大挑战,尤其是结果在窄操作范围的极限。在最近的研究中,直接注水在HCCI燃烧用于稳定燃烧,提高了工作范围。本文概述了注水对HCCI燃烧的潜力的热力学影响和评价。调查是使用不同的燃料,调查直接注水对HCCI燃烧的影响两个单汽缸发动机的研究进行。在这项工作中,使用其通过负阀重叠控制的内部排气再循环获得所需要的能量,以实现自动点火。稳态水喷射正时,压力和质量扫描进行分析上HCCI燃烧的影响。基于这些单缸调查,进行了模拟,模拟的水的影响的残留气体的量,缸内温度和热释放速率。此外,进行了循环注水调查,向长时间从短期冷却效应分离。结果喷射水每2个周期时喷射水每循环,甚至减少12.2%时显示NO_X排放显著减少44.5%。这种权衡用水量,燃烧相位和NO_X减排之间可以为未来控制应用优化有用。

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