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首页> 外文期刊>Journal of materials in civil engineering >Potential Energy Savings by Reducing Rolling Resistance of Dutch Road Pavements
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Potential Energy Savings by Reducing Rolling Resistance of Dutch Road Pavements

机译:通过降低荷兰道路路面的滚动阻力来潜在节省能源

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The current study focuses on options to improve vehicle energy efficiency by reducing rolling resistance on Dutch national highways. Different studies of pavement materials have been evaluated, and models have been compared to experimental data to review rolling resistance indicators. The study shows that texture parameters MPD (mean profile depth) and RMS (root mean square) are relevant indicators for rolling resistance, whereas the effect of road roughness (IRI) is found to be larger than indicated in the evaluated models. The effects of other wavelength regions, texture orientation, and road wear need further investigation. The rolling resistance assessment shows that single-layer porous asphalt concrete (PAC) with aggregate size 6/16 (which is most currently used on Dutch highways) has rolling resistance levels that are 8-10% higher than the levels of double-layer porous asphalt concrete (DPAC) with aggregate size 2/6. Switching to DPAC 2/6 for highways would result in energy savings of 2-2.5%. These calculations are based on estimations and results with high uncertainty and should therefore be taken as a rough estimate of the potential energy savings. Further research is recommended to further refine and validate the results of this study.
机译:当前的研究侧重于通过降低荷兰国道上的滚动阻力来提高车辆能源效率的选择。对路面材料的不同研究进行了评估,并将模型与实验数据进行了比较,以审查滚动阻力指标。研究表明,纹理参数MPD(平均轮廓深度)和RMS(均方根)是滚动阻力的相关指标,而发现路面粗糙度(IRI)的影响要大于评估模型中的指示。其他波长区域,纹理方向和道路磨损的影响需要进一步研究。滚动阻力评估表明,骨料尺寸为6/16的单层多孔沥青混凝土(PAC)(目前在荷兰高速公路上使用最多)的滚动阻力等级比双层多孔沥青混凝土高8-10%骨料尺寸为2/6的沥青混凝土(DPAC)。转换为高速公路的DPAC 2/6将节省2-2.5%的能源。这些计算基于具有高度不确定性的估计和结果,因此应被视为潜在节能量的粗略估计。建议进一步研究以进一步完善和验证本研究的结果。

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