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The Study of the Control on The First Firing Cycle for Reducing the Cold Start Emissions in a Liquid Petrol Gas Spark Ignition Engine

机译:降低液化气汽油火花点火发动机冷启动排放的第一点火循环控制研究

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The first firing cycle is very important for cold-start. Well-managed combustion of the first firing cycle can create high temperatures in the cylinder, which are beneficial for combustion on the following cycles, leading to an overall decrease the Hydrocarbon (HC) and Carbon Monoxide (CO) emissions. The quantity of HC emissions is the criterion of optimal excess air factor judgment, however it does not give complete understanding of fuel-air mixing, combustion and emissions generation within the cylinder of a Spark Ignition (SI) engine during cold start. Transient Nitric Oxide (NO) emissions, which can give information about combustion, can be an additional criterion for judging the optimal excess air factor. The present paper investigated the characteristic of the transient NO emissions of the first firing cycle during cold start in an electronic fuel injected SI engine fuelled with Liquid Petrol Gas (LPG). The transient NO emissions combining with the HC and CO emissions during cold start were used to identify the combustion in the cylinder, and found the optimal spark angle and excess air factor of the first firing cycle finally. In present paper, for the first firing cycle, the optimal spark angle was 10掳CA BTDC, and the excess air factor was 0.53. The method and results in this paper are helpful for adjusting the control strategy to reduce total cold start emissions.
机译:第一个点火周期对于冷启动非常重要。良好地控制第一个点火循环的燃烧会在气缸内产生高温,这对随后的循环燃烧有利,从而总体上减少了碳氢化合物(HC)和一氧化碳(CO)的排放。 HC排放量是最佳过剩空气系数判断的标准,但是,它不能完全理解冷启动过程中火花点火(SI)发动机气缸内的燃油-空气混合,燃烧和排放。瞬态一氧化氮(NO)排放可以提供有关燃烧的信息,可以作为判断最佳过剩空气系数的附加标准。本文研究了在以液态汽油(LPG)为燃料的电子燃油喷射SI发动机的冷启动过程中,第一点火循环瞬态NO排放的特征。冷启动期间的瞬时NO排放与HC和CO排放相结合,用于识别气缸中的燃烧,并最终找到第一个点火循环的最佳火花角和过量空气系数。在本文中,对于第一个点火循环,最佳火花角为10掳CA BTDC,过量空气系数为0.53。本文的方法和结果有助于调整控制策略以减少总的冷启动排放。

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