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The Dual-Fueled Homogeneous Charge Compression Ignition Engine Using Liquefied Petroleum Gas and Di-Methyl Ether

机译:使用液化石油气和二甲基醚的双燃料均匀电荷压缩点火发动机

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The combustion, knock characteristics and exhaust emissions in an engine were investigated under homogeneous charge compression ignition operation fueled with liquefied petroleum gas with regard to variable valve timing and the addition of di-methyl ether. Liquefied petroleum gas was injected at an intake port as the main fuel in a liquid phase using a liquefied injection system, while a small amount of di-methyl ether was also injected directly into the cylinder during the intake stroke as an ignition promoter. Different intake valve timings and fuel injection amounts were tested in order to identify their effects on exhaust emissions, combustion and knock characteristics. The optimal intake valve open timing for the maximum indicated mean effective pressure was retarded as the λ{sub}(TOTAL) was decreased. The start of combustion was affected by the intake valve open timing and the mixture strength (λ{sub}(TOTAL)) due to the volumetric efficiency and latent heat of vaporization. Hydrocarbon and carbon monoxide emissions were increased as the intake valve open timing was retarded. However, carbon dioxide was decreased as the intake valve open timing was retarded.
机译:在均匀的电荷压缩点火操作下研究了发动机中的燃烧,爆震特性和废气排放,其具有液化的石油气的具有可变气体定时和加入二甲基醚。使用液化注射系统将液化石油气注射在进气口中作为液相中的主燃料,而在进气中,也将少量的二甲基醚直接喷射到圆柱体中作为点火启动子。测试不同的进气门定时和燃料喷射量,以识别它们对废气排放,燃烧和爆震特性的影响。最大指示的平均有效压力的最佳进气门打开定时被延迟,因为λ{sub}(总计)降低。燃烧的开始是由于容积效率和气化潜热的影响进气阀打开正时和混合气浓度(λ{子}(TOTAL))。随着进气阀的开放正时延迟,烃和一氧化碳排放量增加。然而,随着进气门开放正时延迟,二氧化碳减少。

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