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Assessment of the impact of low-speed-pre-ignition mitigation techniques on emission levels

机译:评估低速预点火缓解技术对排放水平的影响

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Low-speed-pre-ignition (LSPI) presents a great challenge for developing smaller, more efficient internal combustion engines. Current research focuses on understanding the causes of LSPI and developing strategies to mitigate its intensity or eliminate it completely. On this paper, the effect of different LSPI mitigation strategies on emission levels is evaluated. For this purpose, a 1.0 naturally aspirated port fuel injection (PFI) engine was used. The research engine suffers from LSPI phenomena under rotation speeds below 1000 rpm and high loads. Operation parameters were controlled using a fully instrumented dynamometer cell with incylinder pressure monitoring. The occurrence of LSPI was determined by using in-cylinder pressure data paired with in-cylinder light intensity using an instrumented spark plug with optical access to the combustion chamber. The emission levels of CO, CO_2, NO, NO_2 amd HC were measured using a real-time emission analysis stand. The results obtained indicate that under non-stochastic LSPI, NO and NO_2 emissions tend to increase drastically due to the increasing incylinder temperatures. Reducing the air/fuel ratio has a positive effect on mitigating LSPI intensity but has a negative effect on CO and HC emissions. It is also observed that intake air temperature has an important effect on the formation of CO and NO_x under heavy knocking conditions.
机译:低速 - 预点火(LSPI)对开发更小,更高效的内燃机呈现出色的挑战。目前的研究侧重于了解LSPI的原因和制定战略,以减轻其强度或完全消除它。在本文中,评估了不同LSPI缓解策略对发射水平的影响。为此目的,使用1.0自然吸气的端口燃料喷射(PFI)发动机。研究引擎在旋转速度下遭受LSPI现象,低于1000rpm和高负荷。使用具有Invylinder压力监测的完全仪表测力计单元来控制操作参数。通过使用具有仪器的火花塞对燃烧室的光学接入的仪器的火花塞对缸内压力数据配对而确定LSPI的发生。使用实时排放分析支架测量CO,CO_2,NO,NO_2AMD HC的发射水平。得到的结果表明,由于增加的Incylinder温度,在非随机LSPI下,NO和NO_2排放趋于大幅增加。降低空气/燃料比对缓解LSPI强度而具有积极影响,但对CO和HC排放产生负面影响。还观察到,进气温对重爆裂条件下的CO和NO_X的形成具有重要作用。

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