首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Characteristics of nanoparticle emission from a light-duty diesel vehicle during test cycles simulating urban rush-hour driving patterns
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Characteristics of nanoparticle emission from a light-duty diesel vehicle during test cycles simulating urban rush-hour driving patterns

机译:试验循环在建模城市高峰时段驾驶模式中纳米粒子发射纳米粒子发射特征

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摘要

This study analyzed the characteristics of nanoparticle emissions from a light-duty diesel vehicle in NIER-06 and NIER-09 test cycles, which include acceleration, deceleration, and idling phases without cruise driving phase and thus simulate urban driving patterns during rush hour in South Korea. In general, the tested diesel vehicle emitted more particles as acceleration increased. Since NIER-06 test cycle showed a higher average acceleration than NIER-09 test cycle, the tested diesel vehicle emitted more particles, by 17-31%, per unit distance traveled in NIER-06 test cycle than in NIER-09. When the acceleration phases of NIER-06 and NIER-09 test cycles were categorized into two groups by considering gear shift change, the tested diesel vehicle emitted more particles, by approximately 60%, per unit distance traveled at the acceleration phases with the speed change of lower than 20 km/h, i.e., where it was assumed that gear shift change did not occur during acceleration, than at the acceleration phases with the speed change of higher than 20 km/h, i.e., where it was assumed that gear shift change occurred more than once. Achieving a high average velocity of traffic flow or minimizing sudden acceleration for smooth urban traffic will be of great help in reducing particle emissions from light-duty diesel vehicles.
机译:该研究分析了NIER-06和NIER-09测试循环中轻型柴油车辆纳米粒子排放的特征,包括加速,减速和怠速相,没有巡航驱动阶段,从而在南方的高峰时段模拟城市驾驶模式朝鲜。通常,经过测试的柴油车辆发出更多颗粒,因为加速度增加。由于NIER-06测试循环显示比NIER-09测试循环更高的平均加速度,所以测试的柴油车辆发射更多颗粒,每单位距离在NIER-06测试循环中行驶的每单位距离超过NIER-09。当NIER-06和NIER-09测试循环的加速相通过考虑换档变化分为两组时,测试的柴油车辆更多颗粒,每单位距离在加速相中行进的大约60%,速度变化低于20 km / h,即假设在加速期间没有发生换档变化,而不是在高于20 km / h的速度变化的加速相位,即,在假设换档时更改发生不止一次。实现交通流量的高平均速度或最小化平稳城市交通的突然加速将有很大的帮助,从减少轻型柴油车辆的粒子排放方面有很大的帮助。

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