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Optical diagnostics of the combustion process in a PFI SI boosted engine fueled with butanol-gasoline blend

机译:丁醇汽油混合燃料在PFI SI助推发动机中燃烧过程的光学诊断

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Alcohol blends with hydrocarbon fuels for spark-ignition engine increase fuel octane rating and power for a given engine displacement and compression ratio. In this work, the influence of butanol addition to gasoline was investigated. The experiments were performed in a ported fuel injection single cylinder SI engine with an external boosting device. The optically accessible engine was equipped with the head of a commercial SI turbocharged engine with the same geometrical specifications. The effect on the spark ignition combustion process of 40% of n-butanol blended in volume with 60% pure gasoline (BU40) was investigated by cycle resolved visualization. The engine worked at low speed, medium boosting and WOT. Changes in the spark timing and fuel injection phasing were considered. Comparisons between flame luminosity and combustion pressure data were performed. The fuel was injected at closed (CV) and open intake valves (OV). Butanol blend allowed working in more advanced spark timing without occurrence of abnormal combustion. For the blend BU40, the duration of injection (DOI) was increased to obtain a stoichiometric mixture. BU40 granted performance levels similar to gasoline and in open valve injection allowed to minimize the abnormal combustion effects including the emission of ultrafine carbonaceous particles, NOx and HC.
机译:在给定的发动机排量和压缩比下,用于火花点火发动机的酒精与烃类燃料的混合可提高燃料辛烷值和功率。在这项工作中,研究了丁醇添加到汽油中的影响。实验是在带有外部增压装置的带端口燃油喷射单缸SI发动机中进行的。光学可访问的发动机配备了具有相同几何规格的商用SI涡轮增压发动机的缸盖。通过循环分辨可视化研究了40%正丁醇与60%纯汽油(BU40)混合时对火花点火燃烧过程的影响。发动机在低速,中等增压和WOT下工作。考虑了火花正时和燃油喷射相位的变化。进行了火焰发光度和燃烧压力数据之间的比较。在关闭(CV)和打开进气门(OV)的情况下喷射燃油。丁醇混合物可以在更高级的火花正时工作,而不会发生异常燃烧。对于掺混物BU40,增加了注入时间(DOI)以获得化学计量的混合物。 BU40的性能水平与汽油相似,并且在开阀喷射中允许最大程度地减少异常燃烧影响,包括超细碳质颗粒,NOx和HC的排放。

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