首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Evaluation of the time-resolved nanoparticle emissions and the vehicle performance characteristics for a turbocharged gasoline direct-injection vehicle with a metal-foam gasoline particulate filter
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Evaluation of the time-resolved nanoparticle emissions and the vehicle performance characteristics for a turbocharged gasoline direct-injection vehicle with a metal-foam gasoline particulate filter

机译:评估带有金属泡沫汽油颗粒过滤器的涡轮增压汽油直喷汽车的时间分辨纳米颗粒排放和汽车性能特征

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The nanoparticle emissions from gasoline direct-injection engines are of concern because of the high particle number concentrations compared with those from a gasoline port fuel injection engine. A gasoline particulate filter is a potential solution for reducing the particulate matter emissions. In this study, a 2.0 l turbocharged gasoline direct-injection vehicle with a metal-foam-type gasoline particulate filter was tested using the New European Driving Cycle and steady vehicle operating conditions. The particle number concentration, the particle-size distribution and the filtration efficiency were determined using a condensation particle counter and a fast response differential mobility spectrometer (DMS500). The particle number emissions (particle numbers per vehicle travelling distance (particles/km)) over the New European Driving Cycle were 1.95x10(12) particles/km for a base vehicle equipped with a three-way catalytic converter and 5.68x10(11) particles/km for the additional installation of a gasoline particulate filter on the base gasoline direct-injection vehicle. The filtration efficiency of the particle number and the particulate matter mass reached approximately 71% and 67% respectively. The nucleation-mode particles in the size range less than 23nm for the gasoline direct-injection vehicle equipped with a three-way catalytic converter were further reduced on installation of a gasoline particulate filter at the downstream position of the three-way catalytic converter. A sharp pressure drop between the gasoline particulate filter of 21.0 mbar was obtained at a vehicle speed of 120km/h in the New European Driving Cycle. The exhaust gas temperature before the gasoline particulate filter reached around 380-610 degrees C at steady vehicle speeds of 60-120km/h. The installation of the gasoline particulate filter has the potential to satisfy the Euro 6c particle number emissions regulations for light-duty gasoline direct-injection vehicles.
机译:来自汽油直喷发动机的纳米颗粒排放是令人关注的,因为与来自汽油港燃料喷射发动机的纳米颗粒相比,其颗粒数量浓度较高。汽油微粒过滤器是减少微粒排放的潜在解决方案。在这项研究中,使用“新欧​​洲行驶周期”和稳定的车辆运行条件测试了带有金属泡沫型汽油颗粒过滤器的2.0升涡轮增压汽油直喷汽车。使用冷凝粒子计数器和快速响应差动迁移率光谱仪(DMS500)确定颗粒数浓度,粒径分布和过滤效率。对于配备三效催化转化器和5.68x10(11)的基础车辆,新欧洲行驶周期内的颗粒物排放量(每辆汽车行驶距离的颗粒物数量(颗粒/公里))为1.95x10(12)颗粒/公里。在基础汽油直喷汽车上额外安装汽油微粒滤清器的最大油耗/公里。颗粒数和颗粒物质量的过滤效率分别达到约71%和67%。在三元催化转化器的下游位置安装汽油颗粒过滤器之后,对于配备有三元催化转化器的汽油直喷车辆,尺寸范围小于23nm的成核模式颗粒进一步减少。在“新欧洲行驶周期”中,车速为120km / h时,汽油颗粒过滤器之间的压降为21.0 mbar。在60-120km / h的稳定车速下,汽油微粒过滤器之前的废气温度达到380-610摄氏度。汽油颗粒过滤器的安装有可能满足轻型汽油直喷汽车的6c排放标准。

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