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首页> 外文期刊>SAE International Journal of Commercial Vehicles >Medium-Duty Vehicle Fuel Saving Technology Analysis to Support Phase 2 Regulations
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Medium-Duty Vehicle Fuel Saving Technology Analysis to Support Phase 2 Regulations

机译:中型车辆节油技术分析以支持第二阶段法规

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摘要

This paper presents the results of engine and vehicle simulation modeling for a wide variety of individual technologies and technology packages applied to two medium-duty vocational vehicles. Simulation modeling was first conducted on one diesel and two gasoline medium-duty engines. Engine technologies were then applied to the baseline engines. The resulting fuel consumption maps were run over a range of vehicle duty cycles and payloads in the vehicle simulation model. Results were reported for both individual engine technologies and combinations or packages of technologies. Two vehicles, a Kenworth T270 box delivery truck and a Ford F-650 tow truck were evaluated. Once the baseline vehicle models were developed, vehicle technologies were added. As with the medium-duty engines, vehicle simulation results were reported for both individual technologies and for combinations. Vehicle technologies were evaluated only with the baseline 2019 diesel medium-duty engine. The vehicle technology combinations in the T270 delivery truck yielded from 1% to 12% fuel savings, averaged over all the duty cycles. Fuel savings for the diesel engine technology packages ranged from 1% to 5%, averaged over all the duty cycles. The simulation of gasoline engine technology packages produced from 6% to 9% and 6% to 10% for the V-6 and V-8 engines, respectively. The benefits of individual technologies vary widely depending on the drive cycles.
机译:本文介绍了适用于两种中型职业车辆的多种单独技术和技术包的发动机和车辆仿真建模结果。首先对一台柴油和两台汽油中型发动机进行了仿真建模。然后将引擎技术应用于基准引擎。生成的油耗图在车辆模拟模型中的一系列车辆占空比和有效载荷上运行。报告了单个发动机技术以及技术组合或技术包的结果。评估了两辆汽车,即Kenworth T270厢式货车和福特F-650拖车。一旦开发了基本的车辆模型,便添加了车辆技术。与中型发动机一样,报告了单个技术和组合的车辆仿真结果。仅使用基准2019年柴油中型发动机评估了车辆技术。 T270送货卡车的车辆技术组合在所有工作周期内平均节省了1%至12%的燃料。在所有工作周期内,柴油发动机技术套件的燃油节省范围为1%至5%。对于V-6和V-8发动机,汽油发动机技术套件的仿真分别产生了6%至9%和6%至10%的结果。各个技术的优势取决于驱动周期而相差很大。

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