在保持清洁试验中使用乙醇和丁醇混合物的汽油雾化指标的操作评估

Q2 Engineering Archives of Transport Pub Date : 2022-06-30 DOI:10.5604/01.3001.0015.9583
I. Pielecha, Z. Stępień
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引用次数: 0

摘要

减少道路运输部门污染的全球政策要求引入经过重大修改的已在使用的技术和建筑解决方案。目前,直接燃油喷射技术是降低油耗和排放到大气中的标准污染物,以及进一步提高发动机性能的最佳解决方案。就废气排放而言,与间接燃油喷射SI发动机相比,直接喷射火花点火式发动机的特征是颗粒物的废气排放量显著更高(约高出10倍),它们表现出更大的爆震燃烧倾向,并且容易在发动机零件上形成有害沉积物,包括在喷油器中。位于燃烧室中的喷射器尖端暴露在由燃烧的燃料-空气混合物引起的非常高的压力和温度的直接影响下,这有助于有害沉积物的快速形成。火花点火式发动机中基于操作的喷射器污染导致喷射器的横截面流动直径减小,从而需要延长喷射时间以保持燃料剂量和预期的发动机操作参数。在发动机测功机和燃料雾化过程光学试验台上进行了试验。所提出的研究分析表明,使用外加剂可以有效降低污染的可能性。本文介绍了根据CEC F-113-KC程序进行的发动机试验的结果分析。此外,对喷射器进行了测试,以对喷射的燃料流的几何指标进行分析。喷射的燃料流的范围、表面积和速度以及流中的燃料分布基于等效指示器来确定。所获得的结果表明,与参考燃料相比,汽油中10%(V/V)的乙醇和丁醇掺合物没有显著延长燃料喷射时间。乙醇比例的进一步增加导致燃料流量和燃料喷雾的几何指标显著恶化。
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Operational evaluation of atomization indicators for gasoline with admixtures of ethanol and butanol during Keep-Clean tests
The global policy of reducing road transport sector pollution requires the introduction of significantly modified already in use technologies and construction solutions. Currently, direct fuel injection technology is the best solution in terms of reducing fuel consumption and exhaust emissions of standard pollutants into the atmosphere, as well as further improving the engine performance. In terms of exhaust emissions, direct injection spark ignition engines are characterized by significantly higher exhaust emissions of particulate matter (approximately 10 times higher) compared to indirect fuel injection SI engines, they show a greater tendency to knocking combustion and are prone to the formation of harmful deposits on engine parts, including in the fuel injectors. The injector tips located in the combustion chamber are exposed to the direct influence of the very high pressure and temperature caused by the combusting fuel-air mixture, which contributes to the rapid formation of harmful deposits. Operation-based injectors contamination in spark ignition engines results in a reduction of the cross-sectional flow diameter of the injector, which then necessitates the extension of the injection time in order to maintain the fuel dose and the expected engine operating parameters. The tests were carried out on an engine dynamometer and an optical test stand for fuel atomization process. The presented research analyzes indicate the possibility of using admixtures that effectively reduce the likelihood of contamination. The paper presents a results analysis of engine tests performed in accordance with the CEC F-113-KC procedure. Additionally, the injectors were tested to conduct an analysis of the injected fuel stream’s geometric indicators. The range, surface area and speed of the injected fuel stream as well as the fuel distribution in the stream were determined based on an equivalent indicator. The obtained results indicated that ethanol and butanol admixtures of 10% (V/V) to gasoline did not significantly extend the fuel injection time as compared to the reference fuel. A further increase in the proportion of ethanol caused a significant deterioration of the fuel flow and the geometric indicators of the fuel spray.
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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