Efficiency optimization of a vehicle combustion engine by the adjustment of the spark advance angle

Adam Kamiński, Konrad Krakowian, Maria Skrętowicz, Mateusz Kupski
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引用次数: 0

Abstract

Changing the ignition advance angle has a significant impact on the performance of a combustion engine. Optimization of ignition advance angle is a major task of adjusting engine concerning emission standards, fuel consumption, torque value, etc. The results of the research showed that the process of optimizing ignition advance curve can noticeably increase engine efficiency, as well as torque and power output from the engine, while reducing fuel consumption as a result of lower indications of the air flow mass per second from MAF sensor (mass air flow sensor). The highest impact of the ignition advanced angle modifications can be seen in the area of the highest volumetric efficiency of the tested combustion engine. Almost no impact is observed within high engine speed levels. Simultaneously increasing engine load and rotation speed increases the possibility of engine knocking, which has devastating effect on engine durability.
通过调整火花提前角优化汽车内燃机的效率
改变点火提前角对内燃机的性能有重大影响。优化点火提前角是调整发动机排放标准、油耗、扭矩值等的一项重要工作。研究结果表明,优化点火提前角曲线的过程可以显著提高发动机效率,增加发动机的扭矩和功率输出,同时由于 MAF 传感器(质量空气流量传感器)每秒显示的空气流量质量较低,可以降低油耗。点火提前角修改对测试燃烧器容积效率最高的区域影响最大。同时提高发动机负荷和转速会增加发动机熄火的可能性,从而对发动机的耐用性产生破坏性影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
30
审稿时长
6 weeks
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