Centre for Ports and Maritime Safety, Dalian Maritime University, Dalian, Liaoning, 116026, China; College of Water Conservancy Engineering, Zhengzhou University, Zhengzhou, Henan, 450001, China E-mail:
Centre for Ports and Maritime Safety, Dalian Maritime University, Dalian, Liaoning, 116026, China.
Water Sci Technol. 2023 Nov;88(10):2594-2610. doi: 10.2166/wst.2023.338.
Surface roughness is an important factor to consider when evaluating the loads of surface runoff caused by road-deposited sediment (RDS) wash-off and creating management solutions for this occurrence in metropolitan areas. Nevertheless, the implications of surface roughness on RDS development and escape remain unclear due to a paucity of experimental evidence distinguishing the significance of surface roughness. This research aimed to differentiate the impact of surface roughness on RDS accumulation and wash-off by employing paired asphalt, rainfall simulation designs, and concrete road surfaces. Our findings indicated that normal asphalt surfaces are typically rougher than typical concrete surfaces because they frequently contain deeper depressions. Compared to concrete surfaces, asphalt surfaces typically retain more RDS, a higher proportion of coarse aggregates, more RDS wash-off loads, and a lower proportion of wash-off. Surface roughness has varying impacts on the RDS motilities of particulates of varying sizes during rainy runoff; nevertheless, the settleable particles (40-150 μm) were more noticeably impacted by it. The first flush effect also seemed to be more pronounced on surfaces with lower roughness. Hence, surface roughness has a significant impact on how RDS builds on and is washed off of various road aspects.
表面粗糙度是评估道路沉积物(RDS)冲刷引起的地表径流荷载时需要考虑的一个重要因素,也是为大都市地区的这种情况制定管理解决方案的关键因素。然而,由于缺乏区分表面粗糙度重要性的实验证据,表面粗糙度对 RDS 发展和逃逸的影响仍不清楚。本研究旨在通过采用配对的沥青、降雨模拟设计和混凝土路面来区分表面粗糙度对 RDS 积累和冲刷的影响。研究结果表明,正常的沥青路面通常比典型的混凝土路面更粗糙,因为它们经常包含更深的凹陷。与混凝土路面相比,沥青路面通常保留更多的 RDS、更高比例的粗骨料、更多的 RDS 冲刷负荷和更低的冲刷比例。表面粗糙度对不同大小颗粒物在雨天径流中的 RDS 迁移能力有不同的影响;然而,沉降颗粒(40-150 μm)受其影响更为明显。低粗糙度表面的初冲效应似乎也更为明显。因此,表面粗糙度对 RDS 在各种道路表面的积累和冲刷方式有重要影响。