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Quantification of Efficiency Gains for Dilute IC Engines due to Increases of the Ratio of Specific Heats

机译:由于比热比增加而导致的稀薄IC发动机效率增益的量化

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Recent engine developments have demonstrated significant thermal efficiency gains for IC engines employing lean mixtures and high levels of exhaust gas recirculation (EGR). These efficiency gains have often been attributed to reduced heat losses and increases of the ratio of specific heats. No previous publication, however, has provided the quantitative contributions from these two items. This lack of information, therefore, motivated the current work. An automotive engine was selected for this study, and a thermodynamic engine cycle simulation was used for the evaluation. Engine conditions included a range of loads and speeds. For each engine condition, three cases were considered. These cases varied the equivalence ratio from stoi-chiometric to 0.7, and varied the EGR from zero to 45%. Depending on the engine conditions, the net indicated thermal efficiency increased between 4.2% and 8.9% (absolute) for the engine with the lean mixture (Φ = 0.7) and EGR (45%). The lower gas temperatures and lean mixtures resulted in reduced heat losses and increases of the ratio of specific heats. For all conditions examined, the majority of the thermal efficiency gains were due to the increases of the ratio of specific heats. The contributions from the increases of the ratio of specific heats toward the efficiency gains ranged between about 46% and 82% for the conditions examined. The rest of the gains were from the reduced heat losses.
机译:最近的发动机开发已经表现出采用瘦混合物和高水平的废气再循环(EGR)的IC发动机的显着热效率。这些效率增益往往归因于减少热损失和比例的比例。但是,此前没有以前的出版物提供了这两个项目的定量贡献。因此,这种缺乏信息,激励了当前的工作。选择了汽车发动机用于该研究,并且热力学发动机循环模拟用于评估。发动机条件包括一系列负载和速度。对于每个发动机状态,考虑了三种情况。这些病例从STOI-Chiometric的等效比变化为0.7,并从零到45%变化EGR。根据发动机条件,净指示的热效率增加了发动机的4.2%和8.9%(绝对),具有贫混合物(φ= 0.7)和EGR(45%)。较低的气体温度和稀薄混合物导致了热损失降低和比例的增加。对于所检查的所有条件,大多数热效率增益是由于比率的增加。对于所检查条件,特定热量与效率增长的贡献范围为约​​46%和82%。其余的收益来自减少的热量损失。

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