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Theoretical study of the effects of engine parameters on performance and emissions of a pilot ignited natural gas diesel engine

机译:发动机参数对引燃天然气柴油发动机性能和排放影响的理论研究

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摘要

With the increasing concern regarding diesel vehicle emissions and the rising cost of the liquid diesel fuel as well, more conventional diesel engines internationally are pursuing the option of converting to use natural gas as a supplement for the conventional diesel fuel (dual fuel natural gas/diesel engines). The most common natural gas/diesel operating mode is referred to as the pilot ignited natural gas diesel engine (PINGDE) where most of the engine power output is provided by the gaseous fuel while a pilot amount of the liquid diesel fuel injected near the end of the compression stroke is used only as an ignition source of the gaseous fuel-air mixture. The specific engine operating mode, in comparison with conventional diesel fuel operation, suffers from low brake engine efficiency and high carbon monoxide (CO) emissions. In order to be examined the effect of increased air inlet temperature combined with increased pilot fuel quantity on performance and exhaust emissions of a PINGD engine, a theoretical investigation has been conducted by applying a comprehensive two-zone phenomenological model on a high-speed, pilot ignited, natural gas diesel engine located at the authors' laboratory. The main objectives of the present work are to record the variation of the relative impact each one of the above mentioned parameters has on performance and exhaust emissions and also to reveal the advantages and disadvantages each one of the proposed method. It becomes more necessary at high engine load conditions where the simultaneous increase of the specific engine parameters may lead to undesirable results with nitric oxide emissions.
机译:随着人们对柴油车辆排放物的日益关注以及液态柴油燃料成本的上涨,国际上越来越多的常规柴油发动机正在寻求将天然气转换为常规柴油燃料(双燃料天然气/柴油)的替代品的选择。引擎)。最常见的天然气/柴油操作模式称为引燃天然气柴油发动机(PINGDE),其中大部分发动机功率输出由气态燃料提供,而引燃量的液态柴油燃料在接近尾声时喷射。压缩冲程仅用作气态燃料-空气混合物的点火源。与常规的柴油燃料操作相比,特定的发动机操作模式遭受制动发动机效率低和一氧化碳(CO)排放高的困扰。为了研究进气温度升高和引燃燃料量增加对PINGD发动机性能和尾气排放的影响,通过在高速引燃器上应用全面的两区域现象学模型进行了理论研究。位于作者实验室的点燃的天然气柴油发动机。本工作的主要目的是记录上述每个参数对性能和废气排放的相对影响的变化,并揭示每种建议方法的优缺点。在特定发动机参数同时增加可能导致一氧化氮排放不良后果的高发动机负载条件下,这一点变得更加必要。

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  • 来源
    《Energy》 |2010年第2期|1129-1138|共10页
  • 作者单位

    Laboratory of Propulsion & Thermal Systems. Section of Thermodynamics & Propulsion Systems, Department of Aeronautical Sciences, Hellenic Air Force Academy, Dekelia Air Force Base, 1010 Dekelia, Attiki, Greece;

    Laboratory of Propulsion & Thermal Systems. Section of Thermodynamics & Propulsion Systems, Department of Aeronautical Sciences, Hellenic Air Force Academy, Dekelia Air Force Base, 1010 Dekelia, Attiki, Greece;

    Laboratory of Naval Propulsion Systems, Section of Naval Architecture & Marine Engineering, Department of Naval Sciences, Hellenic Naval Academy, End of Hatzikyriakou Ave., Hatzikyriakio, 185 39 Piraeus, Greece;

    Laboratory of Naval Propulsion Systems, Section of Naval Architecture & Marine Engineering, Department of Naval Sciences, Hellenic Naval Academy, End of Hatzikyriakou Ave., Hatzikyriakio, 185 39 Piraeus, Greece;

    Internal Combustion Engines Laboratory, Thermal Engineering Section, School of Mechanical Engineering, National Technical University of Athens, 9 Heroon Polytechniou St., Zografou Campus, 15780 Athens, Greece;

    Internal Combustion Engines Laboratory, Thermal Engineering Section, School of Mechanical Engineering, National Technical University of Athens, 9 Heroon Polytechniou St., Zografou Campus, 15780 Athens, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dual fuel diesel engine; natural gas; pilot ignition; pilot fuel quantity; air inlet preheating; combustion; emissions;

    机译:双燃料柴油发动机;天然气;引燃器引燃燃油量;进气口预热;燃烧;排放物;

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