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A New Method for Soil Water Characteristic Curve Measurement Based on Similarities Between Soil Freezing and Drying

机译:基于冻干相似性的土壤水分特征曲线测量新方法

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摘要

The soil water characteristic curve (SWCC) is the basis to explain a variety of processes in unsaturated soils, ranging from transport phenomena to mechanical behaviors. In this paper, a new method is developed for SWCC estimation based on the similarity between the freezing/thawing process and drying/wetting process in soils. The theoretical basis for this method is first reviewed. The concept of the soil freezing characteristic curve (SFCC) is introduced to describe the relationship between the unfrozen water content and matric suction in frozen soils. SFCC is analogous to SWCC in that both of them describe the energy status of liquid water associated with liquid water content. Relationships between SWCC and SFCC are discussed. To measure the SFCC, a thermo-time domain refiectometry (TDR) sensor was developed which combines both temperature sensors and conventional TDR sensor. The TDR module and algorithm measured the bulk free water content of soils during the freezing/thawing processes, while the built-in thermocouples measured the internal temperature distribution. SFCCs were obtained from the simultaneously measured TDR and temperature data. Experiments were conducted on a few types of soils to validate this new procedure. The SFCC was obtained from thermo-TDR data collected in specimens subjected to a controlled thawing process, while the SWCC was directly measured by ASTM D5298, the filter paper method. Reasonable agreements were found between SWCC and SFCC. The experimental results implied that the SWCC could be estimated from SFCC, which also provided more evidence of the similarity of freezing/thawing processes and desorption/ sorption processes.
机译:土壤水分特征曲线(SWCC)是解释非饱和土壤中各种过程(从运输现象到机械行为)的基础。本文基于土壤冻融过程与干湿过程的相似性,开发了一种新的SWCC估算方法。首先回顾了这种方法的理论基础。介绍了土壤冻结特征曲线(SFCC)的概念,以描述冻结土壤中未冻结水含量与基质吸力之间的关系。 SFCC与SWCC类似,因为两者都描述了与液态水含量相关的液态水的能量状态。讨论了SWCC和SFCC之间的关系。为了测量SFCC,开发了一种热时域反射检测(TDR)传感器,该传感器结合了温度传感器和常规TDR传感器。 TDR模块和算法测量了冻结/解冻过程中土壤的自由水含量,而内置热电偶测量了内部温度分布。 SFCC是从同时测量的TDR和温度数据中获得的。在几种类型的土壤上进行了实验,以验证这一新程序。 SFCC是从经过受控解冻过程的样品中收集的热TDR数据获得的,而SWCC是通过ASTM D5298(滤纸法)直接测量的。 SWCC和SFCC之间找到了合理的协议。实验结果表明,SWCC可以根据SFCC进行估算,这也为冷冻/解冻过程和解吸/吸附过程的相似性提供了更多证据。

著录项

  • 来源
    《Geotechnical testing journal》 |2012年第1期|p.2-10|共9页
  • 作者单位

    Dept. of Civil Engineering, Case Western Reserve Univ., 10900 Euclid Ave., Bingham 256, Cleveland, OH 44106-7201;

    Dept. of Civil Engineering, School of Engineering & Technology, China Univ. of Geosciences, Beijing, China, 100083;

    Dept. of Civil Engineering, Case Western Reserve Univ., 10900 Euclid Ave., Bingham 210, Cleveland, OH 44106-7201;

    Dept. of Civil Engineering, Case Western Reserve Univ., 10900 Euclid Ave., Bingham 203b, Cleveland, OH 44106-7201;

    Dept. of Civil Engineering, Case Western Reserve Univ., 10900 Euclid Ave., Bingham 203b, Cleveland, OH 44106-7201;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    soil water characteristic curve; soil freezing characteristic curve; thermo-TDR sensor; unsaturated soils; frozen soil;

    机译:土壤水分特征曲线土壤冻结特性曲线TDR温度传感器;非饱和土壤冻土;

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