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张昭, 祝良玉, 张同令, 韩华强, 刘奉银, 齐吉琳. 非饱和砂土渗透系数的理论公式及其在路面排水基层 性能分析中的应用[J]. 岩土工程学报. DOI: 10.11779/CJGE20221049
引用本文: 张昭, 祝良玉, 张同令, 韩华强, 刘奉银, 齐吉琳. 非饱和砂土渗透系数的理论公式及其在路面排水基层 性能分析中的应用[J]. 岩土工程学报. DOI: 10.11779/CJGE20221049
Theoretical equation to predict permeability coefficient for unsaturated sandy soils and its application in the quality analysis of pavement drainage base layer[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20221049
Citation: Theoretical equation to predict permeability coefficient for unsaturated sandy soils and its application in the quality analysis of pavement drainage base layer[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20221049

非饱和砂土渗透系数的理论公式及其在路面排水基层 性能分析中的应用

Theoretical equation to predict permeability coefficient for unsaturated sandy soils and its application in the quality analysis of pavement drainage base layer

  • 摘要: 为准确分析路面排水基层中的水分运动规律,需要合理描述构成基层的非饱和土渗透系数。为此,以砂土为研究对象,先基于Hagen-Poiseuille方程和Darcy定律,依据毛细管原理,并结合土孔径分布与持水曲线之间的相似关系,推得其非饱和渗透系数的积分型公式;其次,依据非饱和土水力特性数据库(UNSODA)中6种砂土的持水及饱和-非饱和渗透试验结果验证了理论公式在低于1000 kPa基质吸力范围内预测减湿过程相对渗透系数的合理性;最后,将提出的理论公式用于计算典型路面排水基层的排水时间,以评价其在排水基层性能分析中的应用效果。研究结果可为路面内部排水系统设计提供理论依据。

     

    Abstract: A better understanding of the moisture flow in the pavement drainage base layer can be achieved by the permeability coefficient for unsaturated soils, which form this kind of layer. In response, an equation to predict unsaturated permeability coefficient was proposed based on the Hagen-Poiseuille equation and Darcy law for sandy soils. The similarity relation between pore size distribution and soil water retention curve was used to derive an integration equation based on the capillary theory. The proposed equation was then validated against both water retention and saturated-unsaturated permeability data for six sandy soils from the hydraulic property database (UNSODA), illustrating that the proposed equation is superior to other published equations for predicting the relative permeability coefficients during drying in the matric suction range lower than 1000 kPa. Finally, the application of the proposed equation was presented based on the evaluation of the time-to-drain on the quality analysis of the pavement drainage base layer. The research results can provide theoretical support for the design of pavement subsurface drainage system.

     

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