首页> 外文期刊>Geotechnical testing journal >Evaluation of Bouwer-Rice Large-Particle Correction Procedure for Soil Water Characteristic Curves
【24h】

Evaluation of Bouwer-Rice Large-Particle Correction Procedure for Soil Water Characteristic Curves

机译:土壤水分特征曲线的Bouwer-Rice大颗粒修正程序的评价

获取原文
获取原文并翻译 | 示例
       

摘要

The Bouwer-Rice correction method to account for large particles excluded during laboratory testing to measure the soil water characteristic curve (SWCC) was evaluated on samples of well-graded alluvium. A large-scale hanging column apparatus was used so that tests could be conducted on specimens containing all particle sizes. The analyses show that SWCCs measured on the fraction of alluvium finer than the No. 4 U.S. sieve (4.8 mm) can be corrected reliably to represent the SWCC of bulk soil or fractions of bulk soil corresponding to different large-particle thresholds. The method can also be used reliably to correct SWCCs measured on soils prepared with different large-particle thresholds (e.g., finer than 25 mm, 12.5 mm, or 4.8 mm). Dry density of the finer fraction being tested must be carefully controlled to match the dry density of the finer fraction in the soils containing large particles. An equation is described for computing the dry density of the finer fraction in a bulk soil. A simplified version of the Bouwer-Rice method is also proposed and evaluated. In this method, a SWCC test is conducted on the finer soil fraction with dry density matching that anticipated in the field, the van Genuchten equation is fit to the measured SWCC to define the shape parameters a and n, and then the SWCC for the field application is computed using the fitted a and n from the test on the finer fraction, saturated volumetric water content of the bulk soil in the field, and a residual water content of zero. Analyses show that this modified Bouwer-Rice method is simpler and results in an accurate representation of the SWCC of soil containing large particles.
机译:在分级梯度较高的样品上评估了Bouwer-Rice校正方法,以解决实验室测试中排除的大颗粒物以测量土壤水特征曲线(SWCC)的问题。使用大型吊柱设备,以便可以对包含所有粒径的样品进行测试。分析表明,在比美国第4号筛网细的4.8%冲积层上测得的SWCC可以可靠地校正,以代表散装土壤或散装土壤的SWCC,对应于不同的大颗粒阈值。该方法还可以可靠地用于校正在具有不同大颗粒阈值(例如,小于25毫米,12.5毫米或4.8毫米)的土壤上测得的SWCC。必须仔细控制要测试的较细级分的干密度,以使其与含有大颗粒的土壤中较细级分的干密度相匹配。描述了一个方程,用于计算块状土壤中较细部分的干密度。还提出并评估了Bouwer-Rice方法的简化版本。在这种方法中,对SWCC试验在较细的土壤部分进行,其干密度与现场预期的相符,van Genuchten方程与所测SWCC拟合以定义形状参数a和n,然后对田间的SWCC进行定义使用拟合的a和n根据更细的分数,田间散装土壤的饱和体积水含量和零残留水含量的测试来计算应用。分析表明,这种改进的Bouwer-Rice方法更简单,可准确表示包含大颗粒的土壤的SWCC。

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