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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Analysis of the combustion process, pollutant emissions and efficiency of an innovative 2-stroke HSDI engine designed for automotive applications
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Analysis of the combustion process, pollutant emissions and efficiency of an innovative 2-stroke HSDI engine designed for automotive applications

机译:专为汽车应用设计的创新型二冲程HSDI发动机的燃烧过程,污染物排放和效率分析

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On the last years engine researchers has been focused on improving engine efficiency in order to decrease CO_2 emissions and fuel consumption, while fulfilling the increasingly stringent pollutant emissions regulations. In this framework, engine downsizing arises as a promising solution, and 2-stroke cycle operation offers the possibility of reducing the number of cylinders without incurring in NVH penalties. An experimental investigation has been performed to evaluate the performance of a newly-designed poppet valves 2-stroke engine, in terms of finding the proper in-cylinder conditions to fulfill the emission limits in terms of NO_x and soot, keeping competitive fuel consumption levels. Moreover, present research work aims to improve the existing knowledge about the gas exchange processes in a 2-stroke engine with poppet valves architecture, and its impact over the combustion conditions, final exhaust emissions levels and engine efficiency. The experimental results confirm how this engine architecture presents high flexibility in terms of air management control to substantially affect the in-cylinder conditions. The in-cylinder oxygen concentration and density, which are the product of a given trapping ratio and delivered mass flow, were linked to pollutant emissions and performance by their impact on instantaneous adiabatic flame temperature and spray mixing conditions. After the optimization process, it was possible to minimize simultaneously NO_x, soot and indicated fuel consumption, without observing a critical trade-off between the pollutant emissions and the fuel consumption.
机译:在过去的几年中,发动机研究人员一直致力于提高发动机效率,以减少CO_2排放和燃料消耗,同时满足日益严格的污染物排放法规。在这种框架下,发动机小型化成为一种有前途的解决方案,并且二冲程循环操作提供了减少气缸数量而又不会引起NVH罚款的可能性。已经进行了实验研究,以评估新设计的提升阀二冲程发动机的性能,以找到合适的缸内条件来满足就NO_x和烟灰而言的排放限值,同时保持有竞争力的燃料消耗水平。此外,当前的研究工作旨在改进关于具有提升阀结构的二冲程发动机中的气体交换过程的现有知识,以及其对燃烧条件,最终废气排放水平和发动机效率的影响。实验结果证实了这种发动机架构在空气管理控制方面如何表现出很高的灵活性,从而大大影响了缸内条件。汽缸内氧气浓度和密度是给定捕集比和输送质量流量的乘积,它们通过影响瞬时绝热火焰温度和喷雾混合条件而与污染物排放和性能相关。在优化过程之后,可以同时减少NO_x,烟灰和指示的燃料消耗,而无需观察污染物排放和燃料消耗之间的关键权衡。

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