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Effects of injection timing of methanol and LPG proportion on cold start characteristics of SI methanol engine with LPG enriched port injection under cycle-by-cycle control

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  • Gong, Changming
  • Wei, Fuxing
  • Si, Xiankai
  • Liu, Fenghua

Abstract

A liquefied petroleum gas (LPG) enriched port injection start aid was used to improve firing and emissions characteristics and overcome cold start difficulties for spark ignition (SI) methanol engines at low ambient temperature. The effects of injection timing of methanol and LPG addition fraction on cold start firing; and hydrocarbon (HC), formaldehyde, and unburned methanol emissions were investigated experimentally using cycle-by-cycle control strategy. Injection timing of methanol significantly affected cold start firing behavior for constant injection timing of LPG. At optimal injection timing of methanol the most fuels enter into the cylinder on time to realize ideal firing of the next cycle combustion after fuel injection. Sufficient LPG addition can ensure reliable cold start firing. The methanol engine obtained lowest HC and unburned methanol, and highest formaldehyde tailpipe emissions for optimal injection timing of methanol. Increasing LPG addition fraction significantly decreased HC and unburned methanol tailpipe emissions and increased formaldehyde emission rapidly. Formaldehyde and unburned methanol tailpipe emissions showed opposite tendencies with injection timing of methanol and LPG addition fraction, whereas HC and unburned methanol tailpipe emissions showed similar tendencies during cold start.

Suggested Citation

  • Gong, Changming & Wei, Fuxing & Si, Xiankai & Liu, Fenghua, 2018. "Effects of injection timing of methanol and LPG proportion on cold start characteristics of SI methanol engine with LPG enriched port injection under cycle-by-cycle control," Energy, Elsevier, vol. 144(C), pages 54-60.
  • Handle: RePEc:eee:energy:v:144:y:2018:i:c:p:54-60
    DOI: 10.1016/j.energy.2017.12.013
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    References listed on IDEAS

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    Citations

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    Cited by:

    1. Kumar, T. Sathish & Ashok, B., 2021. "Critical review on combustion phenomena of low carbon alcohols in SI engine with its challenges and future directions," Renewable and Sustainable Energy Reviews, Elsevier, vol. 152(C).
    2. Gong, Changming & Liu, Zilong & Su, Hang & Chen, Yulin & Li, Junbo & Liu, Fenghua, 2019. "Effect of injection strategy on cold start firing, combustion and emissions of a LPG/methanol dual-fuel spark-ignition engine," Energy, Elsevier, vol. 178(C), pages 126-133.
    3. Meng, Hao & Ji, Changwei & Su, Teng & Yang, Jinxin & Chang, Ke & Xin, Gu & Wang, Shuofeng, 2022. "Analyzing characteristics of knock in a hydrogen-fueled Wankel rotary engine," Energy, Elsevier, vol. 250(C).
    4. Han, Dandan & E, Jiaqiang & Deng, Yuanwang & Chen, Jingwei & Leng, Erwei & Liao, Gaoliang & Zhao, Xiaohuan & Feng, Changling & Zhang, Feng, 2021. "A review of studies using hydrocarbon adsorption material for reducing hydrocarbon emissions from cold start of gasoline engine," Renewable and Sustainable Energy Reviews, Elsevier, vol. 135(C).
    5. Dinesh, M.H. & Pandey, Jayashish Kumar & Kumar, G.N., 2022. "Effect of parallel LPG fuelling in a methanol fuelled SI engine under variable compression ratio," Energy, Elsevier, vol. 239(PC).
    6. Han, Dandan & Deng, Yuanwang & E, Jiaqiang & Feng, Changling & Tan, Yan, 2023. "Experimental and simulation study on Fe-beta controlling of hydrocarbon emission during cold start of gasoline vehicle world light vehicle test cycle," Energy, Elsevier, vol. 277(C).

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