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Combustion characteristics of methane in a direct injection engine usingudspark plug fuel injector

机译:使用 ud的直喷发动机中甲烷的燃烧特性火花塞喷油器

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摘要

The combustion characteristics of methane in a direct injection spark ignition engine using Spark Plug Fuel Injector (SPFI) was investigated. SPFI is a system developed to convert any externally-mixing (port injection, carburetor) spark ignition engine to direct injection by combining fuel injectors into spark plugs. The burning rates of methane were measured using normalized combustion pressure method, where the normalized pressure rise due to combustion is equivalent to the mass fraction burnt at the specific crank angle. A single cylinder research engine was installed with the SPFI system. Cylinder pressures were taken with engine running at 1100 rpm and stoichiometric air/fuel ratio. The spark timing was set at 25oBTDC. For comparison, the engine was run with methane port injection. The optimal fuel injection timing with SPFI was found to be 170o BTDC. Results showed that SPFI direct injection, increased the volumetric efficiency by 11% compared to port injection, resulting in higher heating value of cylinder charge per cycle. Combustion analysis show that the overall burning rate of methane direct injection is faster than the ones of port injection although is slower at the initial stage. Injection pressures affect ignition delay but not the combustion duration. Changing mixture stoichiometry affects the magnitude of ignition delay. Combustion duration increases with leaner mixture. Different load conditions have significant effect on combustion process. Lower loads tend to increase combustion duration but shorten ignition delay. SPFI Di methane system has the potential of increasing engine performance due to increased volumetric efficiency and faster burning rate
机译:研究了使用火花塞燃油喷射器(SPFI)的直喷式火花点火发动机中甲烷的燃烧特性。 SPFI是一种通过将燃油喷射器组合到火花塞中来将任何外部混合(进气口喷射,化油器)火花点火发动机转换为直接喷射的系统。使用归一化燃烧压力法测量甲烷的燃烧速率,其中归因于燃烧的归一化压力升高等于在特定曲柄角燃烧的质量分数。 SPFI系统安装了单缸研究引擎。在发动机以1100 rpm和化学计量的空燃比运行的情况下获取气缸压力。火花正时设置为25oBTDC。为了进行比较,发动机以甲烷进气口喷射运行。发现采用SPFI的最佳燃油喷射正时为BTDC 170o。结果表明,与端口喷射相比,SPFI直接喷射将容积效率提高了11%,从而导致每个循环的气缸充气热量更高。燃烧分析表明,甲烷直接喷射的总体燃烧速率比进气道喷射的总体燃烧速率快,但在开始阶段则较慢。喷射压力会影响点火延迟,但不会影响燃烧持续时间。改变混合物的化学计量比会影响点火延迟的幅度。燃烧时间随着稀薄混合物的增加而增加。不同的负载条件对燃烧过程有重要影响。较低的负载会增加燃烧时间,但会缩短点火延迟。 SPFI甲烷系统由于容积效率提高和燃烧速度加快而具有提高发动机性能的潜力

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  • 作者

    Taib Iskandar Mohamad;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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