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Change of hydraulic conductivity during compression of undisturbed and remolded clays

机译:原状和重塑粘土压缩过程中水力传导率的变化

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摘要

Eight series of falling head hydraulic conductivity tests were performed on both undisturbed and remolded specimens of four clays from China using a modified oedometer to investigate the change of hydraulic conductivity during compression. Similar to their compression behavior, the undisturbed specimens showed the curves of hydraulic conductivity versus effective vertical stress lying above those of the remolded specimens. Past studies showed that the compression curves of remolded clays could be unified into a unique line using the void index. However, such unification between the void index and the hydraulic conductivity for remolded clays was not found in this study. The relationship between the void index (or void ratio) and the hydraulic conductivity for undisturbed specimen was almost identical to that of the remolded specimen. The relationship between the void ratio and the hydraulic conductivity on a logarithm scale was nearly linear with a slope of 0.5 times the initial void ratio at strains <20%, and became concave upwards within the full range of strains during compression. Similar to the oedometer test data, the relationship between the specific volume and the hydraulic conductivity could be expressed by a straight line in a bilogarithmic plot within the full range of strains during compression.
机译:使用改进的里程计对来自中国的四种粘土的未扰动和重塑标本进行了八个系列的落头水力传导率测试,以研究压缩过程中水力传导率的变化。与它们的压缩行为相似,未受干扰的试样的水力传导率与有效垂直应力之间的关系曲线重塑后的试样。过去的研究表明,利用空隙指数可以将重塑粘土的压缩曲线统一为一条唯一的线。但是,在这项研究中未发现重塑粘土的空隙指数与水力传导率之间的这种统一。原始试样的空隙指数(或空隙率)与水力传导率之间的关系几乎与重塑试样的关系相同。在应变<20%时,空隙率与导水率之间的关系几乎为对数线性关系,其斜率是初始空隙率的0.5倍,并且在压缩过程中在整个应变范围内向上凹陷。类似于里程表测试数据,比容和水力传导率之间的关系可以用压缩过程中应变的整个范围内的双对数图中的直线表示。

著录项

  • 来源
    《Applied clay science》 |2011年第2期|p.86-93|共8页
  • 作者单位

    Institute of Geotechnical Engineering, Transportation College, Southeast University, Nanjing 210096, PR China;

    Institute of Geotechnical Engineering, Transportation College, Southeast University, Nanjing 210096, PR China;

    College of Architecture and Civil Engineering, Wenzhou University, Wenzhou 325035, PR China;

    Department of Civil, Environmental, and Architectural Engineering (CEAE), the University of Kansas, Lawrence, Kansas 66045-7609, USA;

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

    hydraulic conductivity; compressibility; clays; liquid limit; clay mineral; strain;

    机译:导水率可压缩性黏土液位粘土矿物应变;

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