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Experimental analysis of a spark-ignition engine using exhaust gas recycle at WOT operation

机译:WOT运行中使用废气再循环的火花点火发动机的实验分析

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Spark-ignition engines are still a competitive solution in a great number of applications. European manufacturers are all involved in the effort of improving fuel economy, at least at some engine operating points while meeting, of course, the pollutant emission standards.rnThe EGR technique, since a long time adopted in reducing the NO_x formation rate, could be an effective system for fuel economy improvement. Mainly, a de-throttle effect and decreased heat losses to the walls can be obtained in this way. Furthermore, lower exhaust gas temperatures can be reached thus avoiding damages to the noble metals of catalytic converters.rnIn this paper, the EGR technique has been widely investigated by carrying out an experimental analysis of a small, naturally aspirated, spark-ignition engine. In particular, at full or high load operation, attention has been paid to the combustion development and the influence of EGR rate on the values of spark advance, at knock onset limit, tolerated by the engine has been assessed. Due to lower temperature levels within the combustion chamber, the obtained results show a decreased octane requirement, thus an optimal choice of spark advance is possible. Hence a significant increase of engine efficiency has been obtained.
机译:在许多应用中,火花点火发动机仍然是一种具有竞争力的解决方案。欧洲制造商都参与了改善燃油经济性的工作,至少在某些发动机工作点上,当然还要满足污染物排放标准。EGR技术由于长期以来一直在降低NO_x的形成率而被采用,提高燃油经济性的有效系统。主要地,以这种方式可以获得节气门效果和减少的壁热损失。此外,可以达到较低的废气温度,从而避免损坏催化转化器的贵金属。本文通过对小型自然吸气式火花点火发动机进行实验分析,对EGR技术进行了广泛研究。特别地,在满负荷或高负荷运行时,已经关注了燃烧的发展,并且已经评估了EGR率对在发动机容许的爆震开始极限处的火花提前值的影响。由于燃烧室内较低的温度水平,因此获得的结果表明降低了辛烷值,因此可以对火花提前进行最佳选择。因此,获得了发动机效率的显着提高。

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