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Development of a Novel Vehicle-Based Method to Assess the Impact of Lubricant Quality on Passenger Car Energy Efficiency

机译:开发一种新型车辆的方法,以评估润滑油质量对乘用车能效的影响

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The traditional vehicle-based approach to measuring the effect of oil-related fuel economy has relied on separate oil-aging and measurement processes where oil-aging takes place using an established driving protocol like the EPA Approved Mileage Accumulation (AMA) Driving Schedule for vehicle aging, then at set mileage intervals fuel economy is assessed using procedures such as the EPA FTP75 and Highway Fuel Economy emission test protocols described in 40 CFR, Parts 86 and 600. These test methods are useful for producing discrete snapshots of fuel economy at set mileage intervals but are unable to provide continuous information about oil-related changes in fuel economy. During the tests, the vehicle's fuel economy is indirectly calculated using a carbon-balance method of the bagged sample of dilute tailpipe emissions that effectively integrates the fuel economy of the vehicle during the sample interval which varies between eight and fifteen minutes. While being well-established and scientifically accepted the emission sampling method provides no information on the continuous process of oil-related fuel economy change with time and limits the ability to investigate transient driving effects on fuel consumption. In this paper the authors address a novel method to simultaneously age engine oils for gasoline-fueled vehicles, and directly assess vehicle fuel consumption using real-world transient driving conditions with high-speed data acquisition. Due to the use of high-speed data acquisition, the resulting large data files yield continuous information about oil durability, engine operation, and oil-related vehicle fuel economy effects. Comprehensive maps of fuel consumption can be derived based on the matrix of operating conditions (acceleration, deceleration, and steady-state cruising) facilitating the development of optimized engine oil formulations. The method yields vehicle make and model-specific information about engine oil effects under all driving scenarios and correlation to EPA window-sticker fuel economy is established.
机译:传统的基于车辆的方法来测量油相关的燃料经济性的效果一直依靠单独的油老化和测量过程,其中油化需要使用类似于EPA批准的里程累积(AMA)建立的驱动协议地方驱动时间表车辆老化,然后在设定的时间间隔里程的燃油经济性,使用程序,如在40 CFR描述的EPA和FTP75高速公路燃料经济排放测试协议评估部件86和600。这些测试方法是在集里程生产燃料经济的离散快照有用间隔,但无法提供有关燃油经济性与石油相关的连续变化的信息。在测试过程中,车辆的燃料经济性,使用稀排气管排放的袋装样品而变化分8和15之间的采样间隔期间,有效地集成在车辆的燃料经济性的碳 - 平衡法间接计算。虽然是行之有效的,并科学上可接受的发射采样方法提供了时间上的油相关的燃油经济性变化的连续方法没有任何信息,并限制以研究燃料消耗驾驶的瞬态效应的能力。在该文讨论了一种新的方法来同时年龄发动机油的汽油为燃料的车辆,以及使用真实世界的瞬态驱动与高速数据采集条件直接评估车辆的燃料消耗。由于采用高速数据采集,产生的大数据文件产生关于油的耐用性,发动机运转和石油相关的汽车燃油经济性效果的持续信息。燃料消耗的综合地图可以基于操作条件(加速,减速,及稳态巡航)促进优化的发动机油配制剂的发展矩阵导出。该方法产生车辆制造商和所有驾驶情况和相关性EPA窗口贴的燃油经济性下的发动机油效果的特定模型的信息被建立。

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