稀异辛烷混合物在电热塞加热亚室SI发动机中的发动机性能

Q2 Engineering Automotive Experiences Pub Date : 2021-11-25 DOI:10.31603/ae.5118
W. Anggono, Soen Peter Stanley, Ferdinand Ronaldo, G. J. Gotama, B. Guo, Emir Yilmaz, M. Ichiyanagi, Takashi Suzuki
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引用次数: 0

摘要

由于难以直接研究氨,本工作研究了贫异辛烷/空气混合物的发动机性能,以近似氨的燃烧行为。这项研究是使用一台单缸改装柴油发动机进行的,该发动机的副室中有火花塞和电热塞。调查改变了发动机转速(1000和1500转/分)、电热塞电压(6和10伏)、过量空气比(1.4至1.8)和点火正时(-2至-5°BTDC)。结果表明,由于燃烧更加完全和稳定,发动机性能得到了改善,过剩率更低,电热塞电压更高。通过提高发动机转速,延长了稀燃极限,改善了发动机性能。由于副燃烧室的特性,延迟点火正时改善了发动机的性能。研究发现,较大的过量空气比可以提高发动机性能对点火正时的敏感性。所有条件下的制动器平均有效压力的变化系数小于7%,表明燃烧稳定。结果表明,目前的装置可用于研究氨混合燃料和氨直接燃烧。
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Engine Performances of Lean Iso-Octane Mixtures in a Glow Plug Heated Sub-Chamber SI Engine
Due to the difficulty to directly study ammonia, the present work investigated the engine performance of lean iso-octane/air mixture to approximate ammonia combustion behaviour. The study was conducted using a single cylinder modified diesel engine that features a spark plug and glow plug in the sub-chamber. The investigations varied the engine speeds (1000 and 1500 RPM), glow plug voltages (6 and 10 volts), excess air ratios (1.4 to 1.8), and ignition timings (-2 to -5 °BTDC). The results suggested improved engine performances with a lower excess ratio and higher glow plug voltage due to more complete and stable combustion. By increasing the engine speed, the lean burn limit was extended and improved the engine performances. Because of the sub-chamber feature, delaying the ignition timing improved the engine performances. A larger excess air ratio was found to increase the sensitivity of the engine performances with the ignition timing. The brake mean effective pressure for all conditions has a coefficient of variation of less than 7%, indicating stable combustion. The results suggested that the current setup can be used to investigate ammonia blended fuel and direct ammonia combustion in future works.
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
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