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Experimental investigation of nanoparticle formation characteristics from advanced gasoline and diesel fueled light duty vehicles under different certification driving modes

机译:在不同认证驾驶模式下高级汽油和柴油轻型车辆的纳米颗粒形成特性的实验研究

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摘要

This paper mainly focused on the comparison of nanoparticle size distribution and number concentration level characteristics with gasoline and diesel fueled light duty vehicles. In the engine research, particle size distribution and number concentrations were analyzed by a DMS500 with engine parameters. Time-resolved particle number concentration levels from test vehicles were measured by a golden particle measurement system (GPMS) as recommended by a Particle Measurement Programme (PMP) on certification modes such as New European Driving Cycle (NEDC), Federal Test Procedure (FTP)-75, and Highway Fuel Economy Test (HWFET). In addition, particle emission characteristics from vehicles were analyzed by DMS500 during transient and high-speed driving conditions. From the results, we found that the formation of particles was highly dependent on vehicle speed and load conditions for each mode. The diesel vehicle equipped with a particulate filter showed substantial reduction of the total particle number whose number concentration was equivalent to that of the gasoline vehicle. The nucleation mode particles from gasoline fuel were mainly emitted; however, the accumulation mode particles from the diesel fuel were generally analyzed.
机译:本文主要着眼于汽油和柴油轻型载具的纳米粒度分布和数浓度水平特征的比较。在发动机研究中,使用具有发动机参数的DMS500分析了粒度分布和数量浓度。按照颗粒测量程序(PMP)的建议,采用黄金颗粒测量系统(GPMS)对测试车辆上时间分辨的颗粒数浓度水平进行了测量,并采用了认证模式,例如新欧洲行驶周期(NEDC),联邦测试程序(FTP) -75和高速公路燃油经济性测试(HWFET)。此外,在瞬态和高速行驶条件下,通过DMS500分析了车辆的颗粒物排放特性。从结果中,我们发现每种模式下颗粒的形成高度依赖于车速和负载条件。配备有颗粒过滤器的柴油车辆显示出其颗粒浓度与汽油车辆相当的总颗粒数大大减少。主要释放出汽油燃料的成核模式颗粒。然而,通常分析了来自柴油的累积模式颗粒。

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