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Influence of gas composition on the combustion and efficiency of a homogeneous charge compression ignition engine system fuelled with methanol reformed gases

机译:气体成分对以甲醇重整气为燃料的均质充量压缩点火发动机系统燃烧和效率的影响

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摘要

A homogeneous charge compression ignition (HCCI) engine system fuelled with dimethyl ether (DME) and methanol-reformed gas (MRG), both produced from methanol by onboard reformers using exhaust heat, has been proposed in previous research. Adjusting the proportions of DME and MRG with different ignition properties effectively controlled the ignition timing and load in HCCI combustion. The use of the single liquid fuel, methanol, also eliminates the inconvenience of carrying two fuels while maintaining the effective ignition control effect. Because reactions producing DME and MRG from methanol are endothermic, a part of the exhaust gas heat energy can be recovered during the fuel reforming. Methanol can be reformed into various compositions of hydrogen, carbon monoxide, and carbon dioxide. The present paper aims to establish the optimum MRG composition for the system in terms of ignition control and overall efficiency. The results show that an increased hydrogen fraction in MRG retards the onset of high-temperature oxidation and permits operation with higher equivalence ratios. However, the MRG composition affects the engine efficiency only a little, and the MRG produced by the thermal decomposition having the best waste-heat recovery capacity brings the highest overall thermal efficiency in the HCCI engine system fuelled with DME and MRG.
机译:在先前的研究中已经提出了一种均质充量压缩点火(HCCI)发动机系统,该系统以二甲醚(DME)和甲醇重整气体(MRG)为燃料,这两种燃料都是由机载重整器利用甲醇由废气产生的。调节具有不同点火特性的DME和MRG的比例可有效控制HCCI燃烧的点火正时和负荷。单一液体燃料甲醇的使用也消除了携带两种燃料的不便,同时保持了有效的点火控制效果。因为由甲醇产生DME和MRG的反应是吸热的,所以可以在燃料重整过程中回收一部分废气热能。甲醇可以重整为氢,一氧化碳和二氧化碳的各种成分。本文旨在针对点火控制和总体效率,为系统建立最佳的MRG组成。结果表明,MRG中氢含量的增加会延迟高温氧化的发生,并允许以更高的当量比运行。但是,MRG的组成对发动机效率的影响很小,并且由具有最佳余热回收能力的热分解产生的MRG在以DME和MRG为燃料的HCCI发动机系统中带来最高的总热效率。

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