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城市雨水径流中总悬浮沉积物的粒径分布:土地利用、降水条件和季节变化的影响。

Particle size distribution of total suspended sediments in urban stormwater runoff: Effect of land uses, precipitation conditions, and seasonal variations.

作者信息

Yan Haibin, Zhu David Z, Loewen Mark R, Zhang Wenming, Yang Yang, Zhao Stacey, van Duin Bert, Chen Lei, Mahmood Khizar

机构信息

Department of Civil and Environmental Engineering, University of Alberta, Edmonton, AB, T6G 1H9, Canada.

Department of Civil and Environmental Engineering, University of Alberta, Edmonton, AB, T6G 1H9, Canada; School of Civil and Environmental Engineering, Ningbo University, Zhejiang, 315211, China.

出版信息

J Environ Manage. 2024 Aug;365:121467. doi: 10.1016/j.jenvman.2024.121467. Epub 2024 Jun 21.

Abstract

Understanding particle size distribution (PSD) of total suspended sediments in urban runoff is essential for pollutant fate and designing effective stormwater treatment measures. However, the PSDs from different land uses under different weather conditions have yet to be sufficiently studied. This research conducted a six-year water sampling program in 15 study sites to analyze the PSD of total suspended sediments in runoff. The results revealed that the median particle size decreased in the order: paved residential, commercial, gravel lane residential, mixed land use, industrial, and roads. Fine particles less than 125 μm are the dominant particles (over 75%) of total suspended sediments in runoff in Calgary, Alberta, Canada. Roads have the largest percentage of particles finer than 32 μm (49%). Gravel lane residential areas have finer particle sizes than paved residential areas. The results of PSD were compared with previous literature to provide more comprehensive information about PSD from different land uses. The impact of rainfall event types can vary depending on land use types. A long antecedent dry period tends to result in the accumulation of fine particles on urban surfaces. High rainfall intensity and long duration can wash off more coarse particles. The PSD in spring exhibits the finest particles, while fall has the largest percentage of coarse particles. Snowmelt particles are finer for the same land use than that during rainfall events because the rainfall-runoff flows are usually larger than the snowmelt flows.

摘要

了解城市径流中总悬浮沉积物的粒径分布(PSD)对于污染物归宿和设计有效的雨水处理措施至关重要。然而,不同土地利用类型在不同天气条件下的粒径分布尚未得到充分研究。本研究在15个研究地点开展了为期六年的水样采集项目,以分析径流中总悬浮沉积物的粒径分布。结果表明,中值粒径按以下顺序递减:铺装住宅区、商业区、砾石巷住宅区、混合土地利用区、工业区和道路。小于125μm的细颗粒是加拿大艾伯塔省卡尔加里径流中总悬浮沉积物的主要颗粒(超过75%)。道路上粒径小于32μm的颗粒所占百分比最大(49%)。砾石巷住宅区的粒径比铺装住宅区的更细。将粒径分布结果与以往文献进行比较,以提供关于不同土地利用类型粒径分布的更全面信息。降雨事件类型的影响可能因土地利用类型而异。前期干旱期较长往往会导致细颗粒在城市表面积累。高降雨强度和长降雨持续时间会冲走更多粗颗粒。春季的粒径分布显示颗粒最细,而秋季粗颗粒所占百分比最大。对于相同的土地利用类型,融雪颗粒比降雨事件期间的颗粒更细,因为降雨径流流量通常大于融雪流量。

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