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Energy efficiency analyses of active flow aftertreatment systems for lean burn internal combustion engines

机译:稀薄燃烧内燃机主动流后处理系统的能效分析

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The use of three way catalytic converters in stoichiometric bum reciprocating internal combustion engine systems has proved to be an effective and efficient method for reducing the level of criteria pollutants. However, such passive systems have not been as successful in emission amelioration when combined with lean burn engines. This is because of the thermochemical nature of the exhaust gases generated by such engines. The high content of exhaust oxygen largely negates the effectiveness of three way catalytic converters, and the comparatively low temperature of the combusted gases means that supplemental energy has to be added to these gases to enable the converter to function correctly. This requirement severely reduces the energy efficiency of conventional passive aftertreatment systems. However, initial empirical studies have indicated that a possible means of improving the performance of aftertreatment devices when used with lean burn engine systems is to use active flow control of the exhaust gases. These results are reported in this paper. This concept has been further investigated by developing an energy efficiency analysis that enables the effects on aftertreatment performance of different gas flow rates, flow reversal frequencies and monolith solid properties to be investigated. Simulation results indicate that through active thermal management, the supplemental energy consumption can be drastically reduced.
机译:在化学计量燃烧的往复式内燃机系统中使用三元催化转化器已被证明是降低标准污染物水平的有效方法。但是,这种无源系统在与稀薄燃烧发动机结合使用时,在改善排放方面还没有取得成功。这是由于这种发动机产生的废气的热化学性质。废气中高含量的氧气大大抵消了三元催化转化器的有效性,并且燃烧气体的温度相对较低,这意味着必须向这些气体中添加补充能量,以使转化器正常运行。该要求严重降低了常规被动后处理系统的能源效率。然而,初步的经验研究表明,当与稀薄燃烧发动机系统一起使用时,改善后处理装置性能的一种可能的方法是使用废气的主动流量控制。这些结果报告在本文中。通过开发能效分析可以进一步研究此概念,该分析可以研究不同气体流速,换流频率和整体固体性能对后处理性能的影响。仿真结果表明,通过主动热管理,可以大大减少补充能源消耗。

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