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Water accumulation associated with water migration is closely related with the ice segregation,but their coupling relationship is still unclear. To decoupling the relationship of water accumulation and ice segrega⁃ tion,herein,the dynamics of water migration and ice segregation during the freezing and thawing of different soil types under different water supplying conditions have been investigated based on pore water pressure mea⁃ surement and layer-scanning technique. Results showed that apparent water accumulation near the freezing front during the freezing of silty clay and loess tested here,but there exist differences in modes. During loess freezing under closed system,no ice segregation was observed,the pore water pressure increased,and there existed ap⁃ parent liquid water accumulation during the early stage of freezing;while during the freezing of silty clay,there existed ice segregation,the pore water pressure decreased,and no apparent liquid water accumulation occurred during the early stage of freezing. The results implied that there exist two modes of water accumulation near the freezing front during soil freezing:one is the water accumulation induced by water pressure gradient induced by pore ice which results in water flowing from the frozen zone and unfrozen zone to the location near the freezing front;the other is the water accumulation induced by cryo-suction of segregation ice which results in the water flowing from the unfrozen zone to the location near the freezing front. Notably,the contribution from each mode associated with water accumulation of soil freezing depends on whether the ice segregation exists. As no ice seg⁃ regation forms,water accumulation induced water pressure gradient predominates during the early stage of freez⁃ ing. As there exists ice segregation during freezing,water accumulation induced cryo-suction predominates dur⁃ ing the later stage of freezing. Investigating on different modes of water accumulations will be helpful for the ex⁃ ploring the mechanisms of freeze-thaw diseases and the ground ice in the cold regions. © 2023 Chinese Journal of General Practitioners. All rights reserved.  相似文献   
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双电层结构对研究黏土力学特性、冻土水分迁移等具有重要意义。为了探究不同影响因素对黏土颗粒扩散双电层电势分布的影响,借鉴Gouy-Chapman-Stern双电层理论,基于Nernst-Planck方程和Poisson-Boltzmann方程,利用数值软件COMSOL定量分析了温度、浓度、颗粒尺寸、颗粒形状以及溶液相对介电常数对扩散双电层电势分布的影响规律。研究表明:温度对电势分布的影响不明显,但随着温度以及Stern层厚度增加,黏土颗粒表面电势和Stern电势均增加;而随着溶液浓度以及相对介电常数减小,表面电势值增加;在矿物成分、表面电荷密度以及颗粒形状确定的情况下,尺寸对于扩散双电层电势分布的影响不显著;但颗粒的不规则形状对电势分布的影响较为明显,当颗粒形状存在夹角时,夹角处的表面电势远大于其他位置,且夹角越小,夹角处表面电势值越大。  相似文献   
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土体冻融过程中的未冻水动态变化与冰-水相变过程密切相关,是冻融过程中非饱和土研究的重要基础。利用在线控温以及分层扫描的核磁共振新技术直观测试冻融过程中非饱和砂土的未冻水含量。结合T_(2)分布曲线(曲线上不同的T;值对应着孔隙水类别特性,曲线下方的面积对应试样水分含量)在冻融过程中的峰值大小和峰面积数据反演土体中含水量的大小与赋存的位置,而曲线的峰形态以及弛豫范围(各峰起始值以及终止值)等信息反演不同类型水分(吸附水与毛细水)以及土体结构的分布。在处理试验结果时,首先依据测试得到的冻结温度划分试样冻结区与未冻区。冻结区与未冻区未冻水含量及其孔隙变化差异明显,究其原因是冰水相变与水分迁移。在土样冻结区域冰水相变占主导地位,水分主要由未冻区向冻结锋面附近的e、f层迁移。首先以中大孔隙中毛细水迁移为主,其次以小孔隙中的吸附水迁移为辅。依据水相变成冰体积增大和孔隙体积占比数据分析可知,冻结区微小孔隙会在冻结过程中连通形成中大孔隙;而在未冻区水分迁移占主导地位。未冻区受固结作用中大孔隙压缩形成为小孔隙。试验过程中冻结锋面附近的e、f层孔隙变化最为剧烈。  相似文献   
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