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Review on the management of RCCI engines

机译:RCCI引擎管理回顾

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RCCI (reactivity controlled compression ignition) engines are found to be capable of achieving higher thermal efficiency and ultra-low NOx and PM emissions. The reactivity controlled combustion is accomplished by creating reactivity stratification in the cylinder with the use of two fuels characterized by distinctly different cetane numbers. The low reactivity (i.e., low cetane number) fuel is firstly premixed with air and then charged into the cylinder through the intake manifold; later, the high reactivity (i.e., high cetane number) fuel is injected into the charged mixture through a direct injector. Subsequently, the reactivity stratification is formed. By strategically adjusting the ratio of two fuels and injection timings, the produced reactivity gradient is able to control the combustion phasing and mitigate the pressure rise rate, as well as the heat release rate. Alternatively, structural factors such as CR (compression ratio) and piston bowl geometries can also affect the combustion characteristics of RCCI. Besides the engine management, the fuels that could be utilized in RCCI engines are also crucial to determine the evaporation, mixing, and combustion processes. To gain a comprehensive knowledge on the state-of-the-art of RCCI combustion, detailed review on the management of RCCI engines has been presented in this paper. This review covers the up-to-date research progress of RCCI including the use of alternative fuels and cetane number improvers, and the effects of fuel ratio, different injection strategies, EGR rate, CR and bowl geometry on engine performance and emissions formation. Moreover, the controllability issues are addressed in this article.
机译:发现RCCI(反应堆控制的压缩点火)发动机能够实现更高的热效率以及超低的NOx和PM排放。反应性控制的燃烧是通过使用两种以十六烷值明显不同为特征的燃料在气缸中产生反应性分层来实现的。低反应性(即十六烷值低)的燃料首先与空气预混合,然后通过进气歧管充入气缸;之后,将高反应性(即十六烷值高)的燃料通过直接喷射器注入到装料的混合物中。随后,形成反应性分层。通过策略性地调整两种燃料的比例和喷射正时,所产生的反应性梯度能够控制燃烧阶段并减轻压力上升率以及放热率。可替代地,诸如CR(压缩比)和活塞碗几何形状的结构因素也可以影响RCCI的燃烧特性。除了发动机管理之外,可用于RCCI发动机的燃料对于确定蒸发,混合和燃烧过程也至关重要。为了全面了解RCCI燃烧的最新技术,本文对RCCI发动机的管理进行了详细回顾。这篇综述涵盖了RCCI的最新研究进展,包括使用替代燃料和十六烷值改进剂,以及燃料比,不同喷射策略,EGR率,CR和转鼓几何形状对发动机性能和排放物形成的影响。此外,本文还讨论了可控性问题。

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