首页> 外文期刊>Road materials and pavement design >Transient unsaturated flow in the drainage layer of a highway: solution and drainage performance
【24h】

Transient unsaturated flow in the drainage layer of a highway: solution and drainage performance

机译:道路排水层中的瞬态不饱和流动:溶液和排水性能

获取原文
获取原文并翻译 | 示例
           

摘要

In order to quickly remove water entering pavement layers so as to mitigate water-induced damage, drainage layers are widely used in highway pavements. This paper introduces a 1-D mathematical model in order to quantify the transient behaviour of the groundwater flow in the drainage layer of highway pavements. The model takes into account the capillary effect and the nonlinear relationship between hydraulic conductivity and saturation. The analytical solution is obtained and validated against the 2-D Richards equation-based model. Then, sensitivity analysis is carried out and the results show that the drainage time is reduced and drainage efficiency is enhanced by capillarity. The drainage capacity (the total water drained from the drainage layer) depends on the water retention curve (e.g. alpha(G) in the Gardner equation). In view of material selection, a relatively low value of alpha(G) helps improve the drainage capacity of the drainage layer, whereas a suitable amount of fine particles also leads to a better drainage performance. Furthermore, the drainage material with hydraulic properties is recommended in terms of drainage performance improvement and strength requirement. The analytical solution, which is simple and easy to use, provides guidance for assessing the capillary effects on the effectiveness and efficiency of subsurface drainage systems of a highway.
机译:为了快速去除进入路面层以减轻水引起的损伤,排水层广泛用于公路路面。本文介绍了一个1-D数学模型,以量化公路路面排水层的地下水流动的瞬态行为。该模型考虑了毛细血管效应和液压导电性和饱和度之间的非线性关系。获得分析解决方案并针对基于2-D Richards等式的模型验证。然后,进行敏感性分析,结果表明,引流时间减少,引流效率通过毛细管增强。排水能力(从排水层排出的总水)取决于水保持曲线(例如,Gardner方程中的alpha(g))。鉴于材料选择,相对较低的α(g)值有助于提高排水层的排水能力,而合适量的细颗粒也导致更好的排水性能。此外,在排水性能提高和强度要求方面建议使用具有液压性能的排水材料。简单易用的分析解决方案提供了评估对高速公路地下排水系统的有效性和效率的毛细血管影响的指导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号