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Development and analysis of a variable position thermostat for smart cooling system of a light duty diesel vehicles and engine emissions assessment during NEDC

机译:轻型柴油车智能冷却系统的可变位置恒温器的开发和分析以及NEDC期间的发动机排放评估

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Smart cooling control systems for IC engines can better regulate the combustion process and heat, a variable position thermostat and electric coolant pumps (EWP) for IC engines are under development by a number of researchers. However, the aim of this study is to assess the performance of a variable position electromagnetic thermostat (VPEMT) to provide more flexible control of the engine temperature and coolant mass flow rate of modification cooling system (MCS). The measurement procedure was applied to two phases under new European drive cycle (NEDC) on a chassis dynamometer, with conventional cooling system (baseline engine) and MCS of a light duty diesel engine. The experimental results revealed that MCS using a VPEMT and EWP contributed to a reduction of engine warm-up period. As a consequence, important reduces in coolant flow rate and most exhaust emission compounds (THC, CO2, CO and smoke opacity) were obtained. In contrast, NOx emission was observed to increase in these conditions. Comparative results are given for various engine speeds during a cold start and engine fully warm-up tests when the engine was equipped by conventional cooling system and MCS operation under NEDC, revealing the effect of MCS on engine fuel consumption and exhaust emissions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:用于IC发动机的智能冷却控制系统可以更好地调节燃烧过程和热量,许多研究人员正在开发用于IC发动机的可变位置恒温器和电动冷却液泵(EWP)。但是,本研究的目的是评估可变位置电磁恒温器(VPEMT)的性能,以便更灵活地控制发动机温度和改进型冷却系统(MCS)的冷却剂质量流量。该测量程序在底盘测功机上采用新的欧洲驱动循环(NEDC)的情况下应用于两个阶段,该阶段具有常规冷却系统(基准发动机)和轻型柴油发动机的MCS。实验结果表明,使用VPEMT和EWP的MCS有助于缩短发动机的预热时间。结果,重要的是冷却剂流速的降低,并且获得了大多数废气排放化合物(THC,CO2,CO和烟气不透明)。相反,观察到在这些条件下NOx排放增加。当发动机配备常规冷却系统并在NEDC下运行MCS时,在冷启动和发动机完全预热测试期间的各种发动机转速都得到了比较结果,揭示了MCS对发动机燃油消耗和废气排放的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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