Lean Boost and External Exhaust Gas Recirculation for High Load Controlled Auto-Ignition

A. Cairns, Hugh Blaxill
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引用次数: 31

Abstract

This work was concerned with increasing the attainable load during gasoline controlled auto-ignition combustion in a multi-cylinder direct fuel injection research engine. To extend the peak output under naturally aspirated conditions it proved favourable to combine internal and external exhaust gas recirculation under stoichiometric fuelled conditions. During turbocharged high load operation it was beneficial in terms of fuel economy to dilute the charge with a combination of internally re-circulated exhaust gases and excess air. Replacing a proportion of these diluents with externally re-circulated burned gases appeared to facilitate lower emissions of HC and CO. The highest load generated via boost was limited by increasing peak in-cylinder pressure and falling gas exchange efficiency. Regardless, the use of boost increased the load at which CAI could be invoked without lean NOx after-treatment.
精益增压和外部废气再循环的高负荷控制自动点火
研究了多缸直喷发动机在汽油控制自燃过程中如何提高可达到负荷。为了延长自然吸气条件下的峰值输出,在化学计量燃料条件下,将内部和外部废气再循环结合起来是有利的。在涡轮增压高负荷运行期间,利用内部再循环废气和多余空气的组合来稀释增压,有利于节省燃油。用外部再循环的燃烧气体取代一部分稀释剂似乎有助于降低HC和CO的排放。增压产生的最高负荷受到缸内峰值压力增加和气体交换效率下降的限制。无论如何,boost的使用增加了CAI可以在没有贫氮氧化物后处理的情况下调用的负载。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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