109
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Laboratory test study on moisture migration and structural damage evolution of frozen unsaturated red clay

ORCID Icon, , , , , , & show all
Article: 2277816 | Received 17 Jan 2023, Accepted 26 Oct 2023, Published online: 13 Nov 2023

References

  • Alzoubi, M.A., et al., 2019. Heat transfer analysis in artificial ground freezing under high seepage: validation and heatlines visualization. International Journal of Thermal Sciences, 139, 232–245.
  • Bai, R., et al., 2020. Study on the coupled heat-water-vapor-mechanics process of unsaturated soils. Journal of Hydrology, 585, 124784.
  • Bai, R., et al., 2022. Study on the frost heave behavior of the freezing unsaturated silty clay. Cold Regions Science and Technology, 197, 103525.
  • Eigenbrod, K.D., and Kennepohl, G.J.A, 1996. Moisture accumulation and pore water pressures at base of pavements. Transportation Research Record: Journal of the Transportation Research Board, 1546, 151–161.
  • Gao, J., et al., 2018. Experimental study on the water-heat-vapor behavior in a freezing coarse-grained soil. Applied Thermal Engineering, 128, 956–965.
  • Hori, M., and Morihiro, H, 1998. Micromechanical analysis on deterioration due to freezing and thawing in porous brittle materials. International Journal of Engineering Science, 36 (4), 511–522.
  • Hou, R., et al., 2019. Characteristics of water–heat variation and the transfer relationship in sandy loam under different conditions. Geoderma, 340, 259–268.
  • Howard, J.J., and Kenyon, W.E, 1992. Determination of pore-size distribution in sedimentary-rocks by proton nuclear-magnetic-resonance. Marine and Petroleum Geology, 9 (2), 139–145.
  • Ikard, S.J., et al., 2009. Thermal characterisation of active layer across a soil moisture gradient in the McMurdo Dry Valleys, Antarctica. Permafrost and Periglacial Processes, 20 (1), 27–39.
  • Kenyon, B., et al., 1995. Nuclear magnetic resonance imaging - technology for the 21st century. Oilfield Review, 7, 19–33.
  • Ketcham, R.A., and Carlson, W.D, 2001. Acquisition, optimization and interpretation of x-ray computed tomographic imagery: applications to the geosciences. Computers and Geosciences, 27 (4), 381–400.
  • Kong, L., et al., 2020. Influence of plasticity on unfrozen water content of frozen soils as determined by nuclear magnetic resonance. Cold Regions Science and Technology, 172, 102993.
  • Kong, B., et al., 2022. Pore structure and fractal characteristics of frozen-thawed soft soil. Fractal and Fractional, 6 (4), 183.
  • Lai, Y., et al., 2014. Study on theory model of hydro-thermal-mechanical interaction process in saturated freezing silty soil. International Journal of Heat and Mass Transfer, 78, 805–819.
  • Li, T., Kong, L., and Guo, A., 2021. The deformation and microstructure characteristics of expansive soil under freeze-thaw cycles with loads. Cold Regions Science and Technology, 192, 103393.
  • Liu, B., et al., 2019. Investigation of pore structure changes in mesozoic water-rich sandstone induced by freeze-thaw process under different confining pressures using digital rock technology. Cold Regions Science and Technology, 161, 137–149.
  • Liu, B., and Li, D, 2012. A simple test method to measure unfrozen water content in clay-water systems. Cold Regions Science and Technology, 78 (7), 97–106.
  • Liu, Z., and Yu, X, 2014. Coupled thermo-hydraulic modelling of pavement under frost. International Journal of Pavement Engineering, 15 (5), 427–437.
  • Ming, F., and Li, D.-Q., 2016. A model of migration potential for moisture migration during soil freezing. Cold Regions Science and Technology, 124, 87–94.
  • Nakano, Y., Tice, A., and Oliphant, J., 1984. Transport of water in frozen soil .4. Analysis of experimental results on the effects of ice content. Advances in Water Resources, 7 (2), 58–66.
  • Niu, F., et al., 2017. Soil moisture, ground temperatures, and deformation of a high-speed railway embankment in Northeast China. Cold Regions Science and Technology, 133, 7–14.
  • Shang, J., et al., 2015. Porosity increment and strength degradation of low-porosity sedimentary rocks under different loading conditions. International Journal of Rock Mechanics and Mining Sciences, 75, 216–223.
  • Starkloff, T., et al., 2017. Quantifying the impact of a succession of freezing-thawing cycles on the pore network of a silty clay loam and a loamy sand topsoil using X-ray tomography. Catena, 156, 365–374.
  • Taina, I.A., Heck, R.J., and Elliot, T.R., 2008. Application of X-ray computed tomography to soil science: a literature review. Canadian Journal of Soil Science, 88 (1), 1–19.
  • Teng, J., et al., 2019. Experimental study of ice accumulation in unsaturated clean sand. Geotechnique, 69 (3), 251–259.
  • Tian, H., Wei, Changfu, and Tan, Long, 2019. Effect of freezing-thawing cycles on the microstructure of soils: a two-dimensional NMR relaxation analysis. Cold Regions Science and Technology, 158, 106–116.
  • Timur, A, 1969. Pulsed nuclear magnetic resonance studies of porosity, movable fluid, and permeability of sandstones. Journal of Petroleum Technology, 21 (6), 775–786.
  • Torrance, J.K., et al., 2008. X-ray computed tomography of frozen soil. Cold Regions Science and Technology, 53 (1), 75–82.
  • Wang, S., et al., 2018. Characterization of freeze–thaw effects within clay by 3D X-ray computed tomography. Cold Regions Science and Technology, 148 (4), 13–21.
  • Wang Y, et al, 2018. Laboratory observation and analysis of frost heave progression in clay from the Qinghai-Tibet Plateau. Applied Thermal Engineering: Design, Processes, Equipment, Economics, 131, 381–389.
  • Wang, T.-L., et al., 2021a. Liquid water-vapour migration tracing and characteristics of coarse-grained soil under high-speed railway train loading in cold regions. Cold Regions Science and Technology, 187 (7), 103283.
  • Wang, T., et al., 2021b. Field experiment and stochastic model of uncertain thermal processes of artificial frozen wall around multi-circle freezing pipe. International Journal of Thermal Sciences, 160, 106658.
  • Wang, S., Yang, Z.J., and Yang, Ping, 2017. Structural change and volumetric shrinkage of clay due to freeze-thaw by 3D X-ray computed tomography. Cold Regions Science and Technology, 138 (6), 108–116.
  • Weller, A., Nordsiek, S., and Debschütz, W., 2010. Estimating permeability of sandstone samples by nuclear magnetic resonance and spectral-induced polarization. Geophysics, 75 (6), E215–E226.
  • Wen, P., et al., 2022. Effect of environmental factors on mechanical properties and damage characteristics of mine overburden used in subgrade. International Journal of Pavement Engineering (1), 1–14.
  • Wu, M., et al., 2014. A study of freezing process in variably-saturated sandy-loam soil under different water table depths: experiment and simulation. Advances in Water Science, 25 (1), 60–68.
  • Wu, M., et al., 2016. Experimental study on evaporation from seasonally frozen soils under various water, solute and groundwater conditions in Inner Mongolia, China. Journal of Hydrology, 535, 46–53.
  • Xin, Y.-F., et al., 2018. Surface energy balance closure at ten sites over the Tibetan plateau. Agricultural and Forest Meteorology, 259, 317–328.
  • Xue, K., et al., 2021. An experimental study of the relationship between the matric potential, unfrozen water, and segregated ice of saturated freezing soil. Bulletin of Engineering Geology and the Environment, 80 (3), 2535–2544.
  • Zhang, S., et al., 2016. Canopy effect caused by vapour transfer in covered freezing soils. Geotechnique, 66 (11), 927–940.
  • Zhang, S., et al., 2017. Water vapor transfer and phase change in unsaturated soils: experimental study on two types of canopy effect. Chinese Journal of Geotechnical Engineering, 39 (5), 961–968.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.