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Effects of a Dual-Loop Exhaust Gas Recirculation System and Variable Nozzle Turbine Control on the Operating Parameters of an Automotive \ud Diesel Engine

机译:双回路废气再循环系统和可变喷嘴涡轮控制对汽车\ ud操作参数的影响 柴油发动机

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摘要

Reduction of NOx emissions and fuel consumption are the main topics in engine development, forcing the adoption of complex techniques and components, whose interactions have to be clearly understood for proper and reliable operations and management of the whole system. The investigation presented in this paper aimed at the development of integrated control strategies of turbocharging, high pressure (HP) and low pressure (LP) exhaust gas recirculation (EGR) systems for better NOx emissions and fuel consumption, while analyzing their reciprocal influence and the resulting variations of engine quantities. The study was based on an extended experimental program in three part load engine operating conditions. In the paper a comparison of the behavior of the main engine sub-systems (intake and exhaust circuits, turbocharger turbine and compressor, HP and LP EGR loops) in a wide range of operating modes is presented and discussed, considering open and closed loop approaches for variable nozzle turbine (VNT) control, and showing how these affect engine performance and emissions. The potential of significant decrease in NOx emissions through the integration of HP and LP EGR was confirmed, while a proper VNT management allowed for improved fuel consumption level, if an open loop control scheme is followed. At higher engine speed and load, further actions have to be applied to compensate for observed soot emissions increase.
机译:减少NOx排放和燃料消耗是发动机开发的主要主题,迫使采用复杂的技术和组件,必须清楚地理解它们的相互作用,才能正确,可靠地操作和管理整个系统。本文提出的研究旨在开发涡轮增压,高压(HP)和低压(LP)废气再循环(EGR)系统的综合控制策略,以改善NOx排放和燃料消耗,同时分析其相互影响和导致发动机数量的变化。该研究基于在三部分负荷发动机运行条件下的扩展实验程序。在本文中,考虑了开环和闭环方法,对各种工作模式下主机子系统(进气和排气回路,涡轮增压器和压缩机,HP和LP EGR回路)的性能进行了比较和讨论。用于可变喷嘴涡轮(VNT)控制,并显示它们如何影响发动机性能和排放。确认了通过集成HP和LP EGR可以显着减少NOx排放的可能性,而如果遵循开环控制方案,则适当的VNT管理可以改善燃油消耗水平。在较高的发动机转速和负载下,必须采取进一步的措施来补偿观察到的烟尘排放量增加。

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