首页> 外文期刊>International journal of engine research >Combustion control for waste-heat recovery system in internal combustion engine vehicles: increase in exhaust-gas heat by combustion phasing and its effect on thermal efficiency factors
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Combustion control for waste-heat recovery system in internal combustion engine vehicles: increase in exhaust-gas heat by combustion phasing and its effect on thermal efficiency factors

机译:内燃机车辆废热回收系统的燃烧控制:通过燃烧定相增加废气热量及其对热效率系数的影响

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摘要

Utilizing exhaust-gas heat can be effective to improve the overall thermal efficiency of engine vehicles. However, the exhaust-gas heat and temperature at light loads may be insufficient for some exhaust-gas heat recovery systems. Exhaust-gas heat is largely influenced by the combustion phase, and a retardation of spark timing could increase exhaust-gas heat considerably. The current work evaluates the effect of a large retardation of spark-ignition timing on the exhaust-gas temperature and heat at steady operating conditions and at vehicle driving mode conditions. The relationships between the exhaust heat and thermal efficiency factors such as cooling-loss fraction, degree of constant volume, and pumping-loss fraction are also analysed in detail. The results show that a combination of spark retardation and intake throttle opening can increase exhaust-gas heat with minimum deteriorations in engine efficiency. The minimum deterioration in efficiency is attributed to reductions in cooling and pumping losses, while the degree of constant volume is decreased by the retarded combustion phase.
机译:利用废气热量可以有效地改善发动机车辆的整体热效率。但是,对于某些废气热回收系统,轻载时的废气热和温度可能不足。排气热在很大程度上受燃烧阶段的影响,火花正时的延迟可能会大大增加排气热。当前的工作是评估在稳定运行条件下以及在车辆驾驶模式条件下,火花点火正时的较大延迟对废气温度和热量的影响。还详细分析了排气热和热效率因素之间的关系,如冷却损失率,恒定体积度和泵送损失率。结果表明,火花延迟和进气节气门开度的组合可以增加废气的热量,同时发动机效率的下降最小。效率的最小降低归因于冷却和泵送损失的减少,而恒定体积的程度由于延迟的燃烧阶段而降低。

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