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基于发动机在环的交通场景对重型车排放和油耗影响
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作者 霍永占 高涛 +4 位作者 汪晓伟 劳海亮 陈熊 张佑源 景晓军 《汽车安全与节能学报》 CAS CSCD 北大核心 2023年第4期505-512,共8页
研究了交通场景对重型柴油车排放和油耗的影响。选取一辆最大设计总质量24.5 t的自卸车,采用发动机在环(EIL)的方法,建立了车辆、道路和驾驶员模型。分析了长时间怠速后车辆再起动时选择性催化还原器(SCR)温度、拥堵状态停车时长和载荷... 研究了交通场景对重型柴油车排放和油耗的影响。选取一辆最大设计总质量24.5 t的自卸车,采用发动机在环(EIL)的方法,建立了车辆、道路和驾驶员模型。分析了长时间怠速后车辆再起动时选择性催化还原器(SCR)温度、拥堵状态停车时长和载荷对油耗和排放的影响。结果表明:当SCR温度在起喷温度附近时,车辆再次起动或加速行驶时,NOx排放较高。拥堵状态停车后,SCR温度显著降低,停车时间越长,NOx排放越高。满载和空载情况下,停车时间对颗粒物数量(PN)排放影响不大,但满载时PN排放显著增加。车辆载荷增加会降低制动比油耗(BSFC)和CO_(2)比排放,同时增加PN和NOx排放,但NOx排放在一定程度上会先增加后减小。 展开更多
关键词 重型柴油车 污染物排放 交通流场景 发动机在环(EIL) 选择性催化还原器(SCR) 制动比油耗(BSFC)
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A new approach to quantifying vehicle induced turbulence for complex traffic scenarios 被引量:3
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作者 Yesul Kim Li Huang +1 位作者 Sunling Gong Charles Q.Jia 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2016年第1期71-78,共8页
Traffic-related pollutants adversely affect air quality, especially in regions near major roadways. The vehicleinduced turbulence(VIT) is a significant factor that controls the initial dilution, dispersion, and ultima... Traffic-related pollutants adversely affect air quality, especially in regions near major roadways. The vehicleinduced turbulence(VIT) is a significant factor that controls the initial dilution, dispersion, and ultimately the chemical and physical fate of pollutants by altering the conditions in the microenvironment. This study used a computational fluid dynamics(CFD) software FLUENT to model the vehicle-induced turbulence(VIT) generated on roadways, with a focus on impact of vehicle-vehicle interactions, traffic density and vehicle composition on turbulent kinetic energy(TKE). We show, for the first time, that the overall TKE from multiple vehicles traveling in series can be estimated by superimposing the TKE of each vehicle, without considering the distance between them while the distance is greater than one vehicle length. This finding is particularly significant since it enables a new approach to VIT simulations where the overall TKE is calculated as a function of number of vehicles. We found that the interactions between vehicles traveling next to each other in adjacent lanes are insignificant,regardless the directions of the traffic flow. Consequently, simulations of different traffic scenarios can be substantially simplified by treating two-way traffic as one-way traffic, with less than 5% difference in the overall volume-averaged TKE. We also developed equations that allow the estimation of the overall volume-averaged TKE as a function of the number and the type of vehicles. 展开更多
关键词 Computational fluid dynamics Turbulent kinetic energy Vehicle-induced turbulence Road-induced turbulence Mixed traffic
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