首页> 外文会议>International Conference on Geotechnical Engineering in Tropical Regions >Soil water characteristic curves for laterite soil at different water contents and methods as lining system
【24h】

Soil water characteristic curves for laterite soil at different water contents and methods as lining system

机译:不同水含量与衬里系统的红土土壤水特征曲线

获取原文

摘要

Preventing groundwater contamination from the most common method of solid waste disposal technique i.e. landfilling is by proving hydraulic barriers. Accordingly, water movement in unsaturated soil is important in the analysis of leachate migration in soil material used as hydraulic barrier in waste containment systems. A full-scale experiment would be prohibitively costly and time consuming. The only feasible recourse therefore is to construct a model, which reasonably portray the behaviour of the full-scale system and simulate the relevant physical parameters and describes the overall significant characteristics of the transport phenomena. This paper presents the trends and patterns of soil water characteristic curves (SWCC) in terms of volumetric water content versus soil suction developed for compacted laterite soil specimens using data from pressure plate tests. Specimens were prepared at three different water contents corresponding to dry of optimum, optimum, and wet of optimum conditions. Models suggested by Brooks and Corey (BC), van Genuchten (VG), and Fredlund and Xing (FX) were used to obtain curve fitting parameters using the program "SWRC Fit" which performed nonlinear fitting of soil water retention curves. The SWRC Fit can simultaneously calculate the fitting parameters of these models with Root Mean Square Error values and draw the fitting curves. By comparing the results of the models using SWRC Fit, the model that best fits the laterite soil investigated will be chosen to be used for further analysis. The results show that the BC model represents the soil water retention curves better than the VG and FX models when the soil has distinct air entry suction. On the other hand, the VG and FX models can fit most soil water retention curves very well when discussion on the pore-size distribution is desired.
机译:防止地下水污染来自最常见的固体废物处理技术方法,即填埋是通过证明液压屏障。因此,不饱和土中的水运动在分析废料系统中用作液压屏障的土壤材料中的渗滤液迁移是重要的。全面的实验将受到昂贵的昂贵和耗时的耗时。因此,唯一可行的追索性是构建一个模型,该模型合理地描绘了全规模系统的行为并模拟了相关的物理参数,并描述了传输现象的总体重要特征。本文介绍了土壤水分曲线(SWCC)的趋势和模式,以体积水含量与压力板试验数据进行压实的红土标本开发的土壤吸力。在对应于最佳,最佳和最佳条件的湿式的三种不同的水含量下制备标本。布鲁克斯和Corey(BC),求算Van Genuchten(VG),和Fredlund和性(FX)建议模型被用来获得使用程序“适合SWRC”,其执行土壤水分特征曲线的非线性拟合曲线拟合参数。 SWRC FIT可以同时使用根均方误差值计算这些模型的拟合参数并绘制拟合曲线。通过使用SWRC拟合进行比较模型的结果,选择最适合后卫的水平的模型将被选择用于进一步分析。结果表明,当土壤具有不同的空气进入抽吸时,BC模型代表了比VG和FX型号更好的土壤水保留曲线。另一方面,当需要讨论孔径分布时,VG和FX型号非常适合大多数土壤水保留曲线。

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