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XIAO Ze-an, LAI Yuan-ming, YOU Zhe-min. Water and salt migration and deformation mechanism of sodium chloridesoil during unidirectional freezing process[J]. Chinese Journal of Geotechnical Engineering, 2017, 39(11): 1992-2001. DOI: 10.11779/CJGE201711006
Citation: XIAO Ze-an, LAI Yuan-ming, YOU Zhe-min. Water and salt migration and deformation mechanism of sodium chloridesoil during unidirectional freezing process[J]. Chinese Journal of Geotechnical Engineering, 2017, 39(11): 1992-2001. DOI: 10.11779/CJGE201711006

Water and salt migration and deformation mechanism of sodium chloridesoil during unidirectional freezing process

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  • Received Date: August 30, 2016
  • Published Date: November 24, 2017
  • The mechanism of water and salt migration in the freezing process has long been a hot spot in the study of frozen soil. The water and salt transport processes and the deformation of soil are studied through the unidirectional freezing experiments. The results show that the deformation of soil with the initial salt content decreases significantly compared with that of desalinized soil, and the salt has a strong impact on the accumulation of water in the frozen fringe, and it can mitigate the frost heave of soil in the freezing process. Supplied with different concentrations of NaCl solution, the deformations of the samples are consistent in the early stage. With the accumulation of salt at the freezing front, the driving force of moisture migration is not so sufficient during the subsequent period when the frost heave decreases significantly. Based on the properties of the solution, a model is established to describe the water and salt migration and deformation in the freezing process, where the influence of salt on the freezing temperature and unfrozen water content are considered. The calculated results illustrate that the proposed model can reflect the laws of temperature, water, salt and deformation in the freezing process well, and it will provide a theoretical basis for understanding the deformation mechanism of saline freezing soil.
  • [1]
    徐敩祖, 王家澄, 张立新. 冻土物理学[M]. 北京: 科学出版社, 2010. (XU Xue-zu, WANG Jia-cheng, ZHANG Li-xin. Frozen soil physics[M]. Beijing: Science Press, 2010. (in Chinese))
    [2]
    高江平, 杨荣尚. 含氯化钠硫酸盐渍土在单向降温时水分和盐分迁移规律的研究[J]. 西安公路交通大学学报, 1997(3): 22-25, 53. (GAO Jiang-ping, YANG Rong-shang. Study on the moving pattern of water and salt with directional temperature lowing in suphate salty soil containing NaCl [J]. Journal of Xi'an Highway University, 1997(3): 22-25, 53. (in Chinese))
    [3]
    HARLAN R L. Analysis of coupled heat-fluid transport in partially frozen soil[J]. Water Resources Research, 1973, 9(5): 1314-1323.
    [4]
    MILLER R D. Freezing and heaving of saturated and unsaturated soils[J]. Highway Research Record, 1972, (393).
    [5]
    KONRAD J M, MORGENSTERN N R. The segregation potential of a freezing soil[J]. Canadian Geotechnical Journal, 1981, 18(4): 482-491.
    [6]
    邴 慧, 马 巍. 盐渍土冻结温度的试验研究[J]. 冰川冻土, 2011(5): 1106-1113. (BING Hui, MA Wei. Experimental study on freezing point saline soil[J]. Journal of Glaciology and Geocryology, 2011(5): 1106-1113. (in Chinese))
    [7]
    万旭升, 赖远明. 硫酸钠溶液和硫酸钠盐渍土的冻结温度及盐晶析出试验研究[J]. 岩土工程学报, 2013, 35(11): 2090-2096. (WAN Xu-sheng, LAI Yuan-ming. Experimental study on freezing temperature and salt crystal precipitation of sodium sulphate solution and sodium sulphate saline soil[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(11): 2090-2096. (in Chinese))
    [8]
    徐敩祖, 王家澄, 张立新. 土体冻胀和盐胀机理[M]. 北京: 科学出版社, 1995. (XU Xue-zu, WANG Jia-chen, ZHANG Li-xin. Frozen soil physics[M]. Beijing: Science Press, 2010. (in Chinese))
    [9]
    王文华. 吉林省西部地区盐渍土水分迁移及冻胀特性研究[D]. 长春: 吉林大学, 2011. (WANG Wen-hua. A study on the moisture content migration and characteristics of frost heaving of saline soil in the western of Jilin province[D]. Changchun: Jilin University, 2011. (in Chinese))
    [10]
    赵天宇. 内陆寒旱区硫酸盐渍土盐胀特性试验研究[D]. 兰州: 兰州大学, 2012. (ZHAO Tian-yu. Experimental study on salt heaving properties of inland sulphate saline soil in cold and arid regions[D]. Lanzhou: Lanzhou University, 2012. (in Chinese))
    [11]
    张 彧, 房建宏, 刘建坤, 等. 察尔汗地区盐渍土水热状态变化特征与水盐迁移规律研究[J]. 岩土工程学报, 2012, 34(7): 1344-1348. (ZHANG Yu, FANG Jian-hong, LIU Jian-kun, et al. Variation characteristics of hydrothermal state and migration laws of water and salt in Qarhan salt lake region[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(7): 1344-1348. (in Chinese))
    [12]
    CARY J W. A new method for calculating frost heave including solute effects[J]. Water Resources Research, 1987, 23(8): 1620-1624.
    [13]
    PADILLA F, VILLENEUVE J P. Modeling and experimental studies of frost heave including solute effects[J]. Cold Regions Science and Technology, 20(2): 183-194.
    [14]
    陈 锦, 李东庆, 邴 慧, 等. 含盐量对冻结粉土单轴抗压强度影响的试验研究[J]. 工程力学, 2013, 13(12): 18-23. (CHEN Jin, LI Dong-qing, BING Hui, et al. The experimental study on the uniaxial compressive strength of frozen silt with different salt content[J]. Engineering Mechanics, 2013, 13(12): 18-23. (in Chinese))
    [15]
    ZENG Q, LI L, PANG X Y, et al. Freeze-thaw behavior of air entrained cement paste saturated with 10wt.% NaCl solution[J]. Cold Regions Science and Technology, 2014, 102: 21-31.
    [16]
    ARCHER D G. Thermodynamic Properties of the NaCl+H 2 O System 1. Thermodynamic Properties of NaCl(aq), NaCl+2H 2 O(cr), and Phase Equilibria[J]. Journal of Physical and Chemical Reference Data, 1992, 21(4): 793-829.
    [17]
    ARCHER D G. Thermodynamic properties of the NaCl+H 2 O system 4 Heat capacities of H 2 O and NaCl(aq) in cold-stable and supercooled states[J]. The Journal of Physical Chemistry B, 2000, 104(35): 8563-8584.
    [18]
    OZBEK H, PHILLIPS S L. Thermal conductivity of aqueous sodium chloride solutions from 20 to 330℃[J]. Journal of Chemical and Engineering Data, 1980, 25(3): 263-267.
    [19]
    化学工业部. 氯碱工业手册[M]. 天津: 化学工业部科学技术情报研究所, 1978. (Ministry of Chemical Industry. Handbook of chlor-alkali industry[M]. Tianjin: Science and Technology Information Research Institute of Ministry of Chemical Industry, 1978. (in Chinese))
    [20]
    牛自得, 程芳琴. 水盐体系相图及其应用[M]. 天津: 天津大学出版社, 2002. (NIU Zi-de, CHEN Fang-qin. Phase diagram and its application of water salt system [M]. Tianjin. Tianjin University Press, 2002. (in Chinese))
    [21]
    ZENG Q, TEDDY F C, DANGLA P, et al. A study of freezing behavior of cementitious materials by poromechanical approach[J]. International Journal of Solids and Structures, 2011, 48(22/23): 3267-3273.
    [22]
    LAI Y M, PEI W S, ZHANG M Y, et al. Study on theory model of hydro-thermal-mechanical interaction process in saturated freezing silty soil[J]. International Journal of Heat and Mass Transfer, 2014, 78: 805-819.
    [23]
    郑秀清, 樊贵胜, 刑述彦. 水分在季节性非饱和冻融土壤中的运动[M]. 北京: 地质出版社, 2002. (ZHENG Xiu-qing, FAN Gui-shen, XING Shu-yan. Water movement in seasonal unsaturated frozen soil[M]. Beijing: Geological Publishing House, 2002. (in Chinese))
    [24]
    NGUYEN T Q, PETKOVIĆ J, DANGLA P, et al. Modelling of coupled ion and moisture transport in porous building materials[J]. Construction and Building Materials, 2008, 22(11): 2185-2195.
    [25]
    CARY J W, MAYLAND H F. Salt and water movement in unsaturated frozen soil[J]. Soil Science Society of America Journal, 1972, 36(4): 549-555.

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