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The Impact of Cooled EGR on Peak Cylinder Pressure in a Turbocharged, Spark Ignited Engine

机译:冷却EGR在涡轮增压下峰值缸压力上的影响,火花点火发动机

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The use of cooled EGR as a knock suppression tool is gaining more acceptance worldwide. As cooled EGR become more prevalent, some challenges are presented for engine designers. In this study, the impact of cooled EGR on peak cylinder pressure was evaluated. A 1.6 L, 4-cylinder engine was operated with and without cooled EGR at several operating conditions. The impact of adding cooled EGR to the engine on peak cylinder pressure was then evaluated with an attempt to separate the effect due to advanced combustion phasing from the effect of increased manifold pressure. The results show that cooled EGR's impact on peak cylinder pressure is primarily due to the knock suppression effect, with the result that an EGR rate of 25% leads to an almost 50% increase in peak cylinder pressure at a mid-load condition if the combustion phasing is advanced to Knock Limited Spark Advance (KLSA). When combustion phasing was held constant, increasing the EGR rate had almost no effect on PCP. In addition, since EGR enables higher compression ratio operation, some data was taken at elevated compression ratios to establish the impact of EGR at a constant load with increased compression ratio.
机译:冷却EGR作为爆震抑制工具的使用在全球范围内获得更多验收。由于冷却的EGR变得更加普遍,发动机设计师提供了一些挑战。在该研究中,评估了冷却EGR对峰缸压力的影响。在几个操作条件下使用1.6升,4缸发动机和不冷却的EGR进行操作。然后评估将冷却的EGR向发动机添加到发动机上的影响,试图通过从增加的歧管压力的效果的燃烧相位分离,分离效果。结果表明,冷却的EGR对峰缸压力的影响主要是由于爆震抑制效果,结果表明,如果燃烧,EGR速率为25%的EGR速率导致峰值气缸压力的近50%增加阶段预先敲击有限的火花前进(KLSA)。当燃烧相位保持恒定时,增加EGR率几乎没有对PCP影响。另外,由于EGR实现更高的压缩比操作,因此在升高的压缩比下拍摄了一些数据,以建立EGR在具有增加的压缩比的恒定负载下的影响。

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