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Precision and repeatability of the TRAKER vehicle-based paved road dust emission measurement

机译:TRACKER车辆铺装道路粉尘排放测量的精度和可重复性

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Testing re-entrained aerosol kinetic emissions from roads (TRAKER), a vehicle based measurement system, has been reported as an alternative to silt measurements for estimating PM10 paved road dust emissions. The precision of the TRAKER system was quantified with repeated measurements over the same roads. A prescribed driving route in Las Vegas, Nevada was traversed with the TRAKER on four consecutive days. The 154 km of paved roads were divided into 645 road segments each representing at least 20 data points and corresponding to links used in the county traffic demand and forecasting model. The TRAKER emission potential, which is related to the emission factor by a multiple of travel speed and provides a measure of a road segment's inherent PM10 dust loading, was averaged over each road segment. Comparing the 4 days of sampling, the coefficient of variation (COV), the standard deviation divided by the average, was < 10%, < 20%, < 50%, and < 70% for 126, 402, 619, and 639 of the 645 road segments, respectively. The COV decreased with the speed at the time of measurement from 26% at 5-10 to s(-1) to 14% at 25-30 m s(-1). No discernible relationships were found between COV and number of data points per road segment, length of road segment, or direction of travel. Over the entire 154 km route, emission potentials on the 4th day were slightly lower than the prior 3 days, owing either to actual changes in road conditions or bias introduced into the measurement by surface wind speed which was highest on the 4th day. (c) 2006 Elsevier Ltd. All rights reserved.
机译:据报导,对道路上重新夹带的气溶胶动力学排放物进行测试(TRAKER),这是一种基于车辆的测量系统,是泥沙测量的一种替代方法,用于估算PM10铺装的道路扬尘排放量。通过在相同道路上重复测量来量化TRAKER系统的精度。内华达州拉斯维加斯的规定驾驶路线连续四天与TRAKER一起穿越。 154公里的铺装道路被分为645个路段,每个路段至少代表20个数据点,并与县交通需求和预测模型中使用的链接相对应。 TRAKER排放潜力与每个行驶路段的行驶速度的倍数相关,并且与行驶速度的倍数相关,并提供了路段固有的PM10灰尘负荷的量度。比较4天的抽样,对于126、402、619和639的样本,变异系数(COV),标准偏差除以平均值分别为<10%,<20%,<50%和<70%。分别为645个路段。 COV随测量时的速度从5-10的26%(s(-1))降低到25-30 m s(-1)的14%。在COV与每个路段的数据点数量,路段的长度或行进方向之间没有发现可辨别的关系。在整条154公里的路线上,第4天的排放潜力略低于前3天,这可能是由于路况的实际变化或第4天最高的地面风速对测量造成的偏差。 (c)2006 Elsevier Ltd.保留所有权利。

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