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Numerical Study and Optimization of Combustion and Emissions of Ammonia/Diesel Dual-Fuel Engines Under Heavy Load

  • Shikai Xing
  • , Xianglong Li
  • , Juxia Li*
  • , Jianbing Gao*
  • , Qiang Lu
  • , Xiaochen Wang
  • , Yunge Zhao
  • , Sunchu Wu
  • , Zhonghui Fu
  • *此作品的通讯作者
  • Hebei Normal University
  • Hebei Provincial Innovation Center for Wireless Sensor Network Data Application Technology
  • Shijiazhuang Information Engineering Vocational College
  • Beijing Institute of Technology
  • Beihang University
  • Chang'an University

科研成果: 期刊稿件文章同行评审

摘要

Ammonia fuel is expected to emerge as an effective alternative to fossil fuels due to its zero-carbon nature, high-efficiency storage and transportation advantages, and extensive industrial manufacturing infrastructure. This study discussed the impacts of compression ratio and injection timing on combustion and emission characteristics of an ammonia/diesel dual-fuel (ADDF) engine using numerical simulation. Results indicated that the corresponding optimal indicated thermal efficiency (ITE) continuously increases with an increasing compression ratio. When the compression ratio is 15:1, the injection timing corresponding to the maximum indicated thermal efficiency is −18 °CA after top dead center (ATDC). When the compression ratio ranged from 16:1 to 19:1, the corresponding optimal ITE was achieved at a retarded injection timing of −12 °CA ATDC. At a compression ratio of 19:1, the optimal ITE reached 47.9%. The in-cylinder formation regions of nitrous oxide (N2O) are closely correlated with NH3, NO, and temperature distributions, being primarily located at the interface between high-concentration regions of unburned NH3 and NO. Under the comprehensive impact of increased compression ratio and advanced injection timing, both N2O and unburned NH3 emissions show a tendency of increasing first and then decreasing, while NOx emissions demonstrated a monotonically increasing behavior.

源语言英语
期刊论文编号4841
期刊Energies
18
18
DOI
出版状态已出版 - 9月 2025
已对外发布

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