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沥青路面径流的水动力特性及影响因素研究

Study on hydrodynamic characteristics and influence factors of asphalt pavement runoff.

机构信息

Research Institute of Highway Ministry of Transport, Beijing 100088, China.

State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100048, China E-mail:

出版信息

Water Sci Technol. 2021 Dec;84(12):3928-3940. doi: 10.2166/wst.2021.486.

Abstract

A hydrodynamic model is developed for rainfall-runoff on asphalt pavement using two-dimensional shallow water equations. A simple yet precise expression is presented to compute flow velocity in order to alleviate the problems associated with numerical instabilities due to small water depths of thin sheet flow. The developed model performed well against measured data and numerical results in two segments. Then, the model was applied to study the influence of highway horizontal alignment, drainage manner, rainfall pattern, surface roughness and geometric parameters on pavement runoff. The results demonstrate that: (i) the influence of highway horizontal alignment on pavement runoff is nonsignificant, while that of drainage manner and the pavement surface roughness is significant. Great differences are observed in flow depth under concentrated drainage and overflow drainage conditions, especially in the area beyond 6 m away from the highway center axis; (ii) remarkable differences in maximum flow depth and peak runoff are presented under uneven and even rainfall conditions, while no great differences are found under three uneven rainfall conditions (front type, center front type and back front type); (iii) the sensitivity of the geometric parameters to the maximum flow depth from strong to weak is cross slope, width, slope length, and longitudinal slope under overflow drainage condition; while that is width, slope length, longitudinal slope and cross slope under concentrated drainage condition.

摘要

采用二维浅水方程建立了用于沥青路面降雨径流的水动力模型。提出了一种简单而精确的表达式来计算流速,以缓解由于薄流层水深小而导致的数值不稳定性问题。该模型在两个路段的实测数据和数值结果中表现良好。然后,该模型被应用于研究公路平纵面、排水方式、降雨模式、路面粗糙度和几何参数对路面径流的影响。结果表明:(i)公路平纵面对于路面径流的影响不显著,而排水方式和路面粗糙度的影响显著。在集中排水和溢洪道排水条件下,流深差异较大,特别是在距离公路中心轴 6m 以外的区域;(ii)不均匀降雨和均匀降雨条件下最大流量深度和峰值径流存在显著差异,而三种不均匀降雨条件(前型、中前型和后前型)下差异不明显;(iii)在溢洪道排水条件下,最大流量深度对几何参数的敏感性从强到弱依次为横坡、宽度、坡长和纵坡;而在集中排水条件下,敏感性从强到弱依次为宽度、坡长、纵坡和横坡。

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