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Experimental study of biogas combustion in an HCCI engine for power generation with high indicated efficiency and ultra-low NO_x emissions

机译:高指示效率和超低NO_x排放的HCCI发动机发电用沼气燃烧的实验研究

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摘要

Combustion parameters and the main exhaust emissions from a biogas fueled HCCI engine are investigated in this study. The study was conducted on a 4-cylinder, 1.9L Volkswagen TDI Diesel engine, which was modified to run in HCCI mode with biogas by means of inlet charge temperature control, boosted intake pressure, and a sonic flow device upstream of the inlet manifold to control biogas composition and the equivalence ratio. For simulating typical power generation conditions, the engine was coupled to an AC motor generator operating at 1800 rpm. In the startup process, gasoline was used in HCCI mode for all cylinders. During the tests, biogas was used in cylinders 2 and 3, and gasoline was used in cylinders 1 and 4 to allow for more stable engine coolant and oil temperatures. The tests were performed through an experimental factorial design to evaluate the effect of inlet charge temperature, boost pressures, and the equivalence ratio of the biogas-air mixture on HCCI combustion parameters and emissions. For biogas at lower equivalence ratios, slight increases in inlet charge temperature and boost pressures enhanced combustion parameters and reduced CO and HC emissions. For biogas at higher equivalence ratios, the effects of inlet charge conditions on HCCI combustion and CO and HC emissions were attenuated; however, ringing intensities and NO_X emissions were increased with higher inlet charge temperature and higher boosted pressures. The maximum gross indicated mean effective pressure was 7.4 bar, the maximum gross indicated efficiency was close to 45%, and NO, emissions were below the US-2010 limit of 0.27 g/kW h. These results show that a biogas fueled HCCI engine is a promising option in stationary power generation applications, meeting high efficiency and ultra-low NO_X emissions.
机译:在这项研究中,研究了以沼气为燃料的HCCI发动机的燃烧参数和主要废气排放。这项研究是在1.9升4缸大众TDI柴油发动机上进行的,该发动机通过进气温度控制,进气压力提高和进气歧管上游的声波流动装置进行了改装,以HCCI模式运行并带有沼气。控制沼气组成和当量比。为了模拟典型的发电条件,将发动机连接到以1800 rpm运行的交流电动发电机。在启动过程中,所有气缸均以HCCI模式使用汽油。在测试过程中,在气缸2和3中使用了沼气,在气缸1和4中使用了汽油,以使发动机冷却液和机油温度更加稳定。通过实验性因子设计进行测试,以评估进气温度,增压压力以及沼气-空气混合物的当量比对HCCI燃烧参数和排放的影响。对于较低当量比的沼气,进气温度略有提高,增压压力提高,燃烧参数得到提高,CO和HC排放降低。对于较高当量比的沼气,进气条件对HCCI燃烧以及CO和HC排放的影响被减弱。但是,随着进气温度的升高和增压压力的升高,振铃强度和NO_X排放量也随之增加。最大总指示平均有效压力为7.4 bar,最大总指示效率接近45%,NO排放量低于US-2010限值0.27 g / kW h。这些结果表明,以沼气为燃料的HCCI发动机在固定式发电应用中是一种有前途的选择,可满足高效率和超低NO_X排放的要求。

著录项

  • 来源
    《Energy Conversion & Management》 |2012年第1期|p.154-162|共9页
  • 作者单位

    Grupo de Ciencia y Tecnologfa del Cas y Uso Rational de la Energia, University of Antioquia, Calle 67 No. 63-108, Medellin, Colombia;

    rnCombustion Analysis Laboratory, Department of Mechanical Engineering, University of California, Berkeley, CA 94720, United States;

    Grupo de Ciencia y Tecnologfa del Cas y Uso Rational de la Energia, University of Antioquia, Calle 67 No. 63-108, Medellin, Colombia;

    Combustion Analysis Laboratory, Department of Mechanical Engineering, University of California, Berkeley, CA 94720, United States;

    Combustion Analysis Laboratory, Department of Mechanical Engineering, University of California, Berkeley, CA 94720, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HCCI engine; power generation; biogas; inlet charge temperature; boost pressure;

    机译:HCCI发动机;发电;沼气进气温度提高压力;

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