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Hydrogen as an ignition-controlling agent for HCCI combustion engine by suppressing the low-temperature oxidation

机译:氢通过抑制低温氧化作为HCCI内燃机的点火控制剂

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Homogeneous charge compression ignition (HCCI) combustion enables internal combustion engines to achieve higher thermal efficiency and lower NO_x emission than with conventional combustion systems. Controlling the ignition timing in accordance with the operating conditions is crucial for utilizing HCCI combustion engines. Adding hydrogen-containing gas is known to retard the autoignition of dimethyl ether (DME) considerably. The effective ignition control by hydrogen can expand the operation range of equivalence ratios and engine loads in HCCI combustion. This research investigated the mechanisms in the ignition control by the chemical kinetics analysis. The results show that the retarded ignition can be attributed to a consumption of OH by hydrogen during low-temperature oxidation of DME. The decreased OH concentration leads to retarded heat release and delays the onset of the high-temperature oxidation.
机译:均质充气压缩点火(HCCI)燃烧使内燃机能够实现比传统燃烧系统更高的热效率和更低的NO_x排放。根据操作条件控制点火正时对于利用HCCI内燃机至关重要。已知添加含氢气体会大大阻碍二甲醚(DME)的自燃。通过氢的有效点火控制可以扩大HCCI燃烧时的当量比和发动机负荷的工作范围。本研究通过化学动力学分析研究了点火控制的机理。结果表明,延迟点火可归因于DME的低温氧化过程中氢消耗的OH。降低的OH浓度导致热量释放延迟,并延迟了高温氧化的开始。

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