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Novel Strategies and Optimization Techniques to Reduce Harmful Diesel Engine Emissions

机译:减少有害柴油机排放的新策略和优化技术

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This article presents experimental and optimization work in developing a premixed charged compression ignitionn(PCCI) combustion diesel engine characterized in a low emission vehicle. An overall process to achievenPCCI combustion in a diesel engine is described, and effects of engine operating parameters such as exhaust gasnrecirculation rate, injection pressure, swirl ratio, and intake pressure along with injection features for fuelnconsumption and harmful engine-out emissions are evaluated. A late intake valve closing (LIVC) strategy wasnemployed for further reduction in particulate matter (PM) and nitrogen oxide (NOx) emissions without sacrificingnfuel economy. Design of experiments was used to evaluate the effect of three selected operating parametersnand their interactions on the emission and fuel consumption characteristics of the PCCI engine. Uponnoptimization it was found that NOx and PM emissions could be simultaneously decreased 57% and 39%,nrespectively, compared to the emission level of a conventional diesel engine.
机译:本文介绍了开发以低排放车辆为特征的预混合增压压燃式(PCCI)燃烧柴油机的实验和优化工作。描述了在柴油发动机中实现PCCI燃烧的总体过程,并评估了发动机运行参数(例如排气再循环率,喷射压力,涡流比和进气压力)的影响,以及用于燃料消耗和有害的发动机排放物的喷射特性。为了避免在不降低燃油经济性的情况下进一步减少颗粒物(PM)和氮氧化物(NOx)排放,采用了延迟进气门关闭(LIVC)策略。实验设计用于评估三个选定的运行参数及其相互作用对PCCI发动机排放和燃料消耗特性的影响。经过优化,发现与传统柴油机的排放水平相比,NOx和PM排放量可以分别同时减少57%和39%。

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