Skip to main content
Top
Published in: Bulletin of Engineering Geology and the Environment 3/2021

03-01-2021 | Original Paper

Thermal-hydraulic-mechanical coupling behavior and frost heave mitigation in freezing soil

Authors: Yukun Ji, Guoqing Zhou, Veerle Vandeginste, Yang Zhou

Published in: Bulletin of Engineering Geology and the Environment | Issue 3/2021

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Frost heave induced by artificial freezing can be destructive to infrastructure. The fundamental physicochemical mechanisms behind frost heave involve mainly the coupled thermal-hydraulic-mechanical (THM) behavior, ice-water phase transition, and heat and fluid flow in porous media. Taking the soil skeleton, pore ice, and pore water as independent bodies to conduct the mechanical analysis, we clarify the physical meaning of the effective stress principle of frozen soil with consideration of the multiphase interactions (ice-water-mineral) and further improve the coupled heat and fluid flow equations. Taking into account the coupled THM mechanism in freezing soils, a discrete ice lenses based model for frost heave is established with focus on segregation and growth of the ice lens. Upon validation of the frost heave model, an intermittent freezing method is applied to investigate mitigation of frost heave. Numerical results show that the intermittent freezing can significantly mitigate frost heave and inhibit the potential frost susceptibility of freezing soil. Our research reveals that the narrowing of the frozen fringe induced by the upward movement of the freezing front is the main reason for the slower growth of the ice lens. The THM behavior and heat and fluid flow based frost heave model enable a better understanding of the geomechanical properties of freezing soil and physical mechanism of frost heave mitigation in porous media (soil).

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Azmatch TF, Sego DC, Arenson LU, Biggar KW (2012a) New ice lens initiation condition for frost heave in fine-grained soils. Cold Reg Sci Technol 82:8–13CrossRef Azmatch TF, Sego DC, Arenson LU, Biggar KW (2012a) New ice lens initiation condition for frost heave in fine-grained soils. Cold Reg Sci Technol 82:8–13CrossRef
go back to reference Azmatch TF, Sego DC, Arenson LU, Biggar KW (2012b) Using soil freezing characteristic curve to estimate the hydraulic conductivity function of partially frozen soil. Cold Reg Sci Technol 83-84:103–109CrossRef Azmatch TF, Sego DC, Arenson LU, Biggar KW (2012b) Using soil freezing characteristic curve to estimate the hydraulic conductivity function of partially frozen soil. Cold Reg Sci Technol 83-84:103–109CrossRef
go back to reference Black PB, Tice AR (1989) Comparison of soil freezing and soil water curve data for Windsor sandy loam. Water Resour Res 25(10):2205–2210CrossRef Black PB, Tice AR (1989) Comparison of soil freezing and soil water curve data for Windsor sandy loam. Water Resour Res 25(10):2205–2210CrossRef
go back to reference Bronfenbrener L, Bronfenbrener R (2010) Modeling frost heave in freezing soils. Cold Reg Sci Technol 61:43–64CrossRef Bronfenbrener L, Bronfenbrener R (2010) Modeling frost heave in freezing soils. Cold Reg Sci Technol 61:43–64CrossRef
go back to reference Cao H, Liu S, Jiang F, Liu J (2007) The theoretical study of frost heave for saturated granular soil-numerical simulation of 1-D ice segregating model based on equilibrium of force and phase. Chin J Theoretic Appl Mechan 30(6):848–857 (In Chinese) Cao H, Liu S, Jiang F, Liu J (2007) The theoretical study of frost heave for saturated granular soil-numerical simulation of 1-D ice segregating model based on equilibrium of force and phase. Chin J Theoretic Appl Mechan 30(6):848–857 (In Chinese)
go back to reference Dash JG, Fu H, Wettlaufer JS (1995) The premelting of ice and its environmental consequences. Rep Prog Phys 58(1):115–167CrossRef Dash JG, Fu H, Wettlaufer JS (1995) The premelting of ice and its environmental consequences. Rep Prog Phys 58(1):115–167CrossRef
go back to reference Everett DH (1961) The thermodynamics of soil moisture. Trans Faraday Soc 57:1541–1551CrossRef Everett DH (1961) The thermodynamics of soil moisture. Trans Faraday Soc 57:1541–1551CrossRef
go back to reference Gilpin RR (1980) A model for the prediction of ice lensing and frost heave in soils. Water Resour Res 16(5):918–930CrossRef Gilpin RR (1980) A model for the prediction of ice lensing and frost heave in soils. Water Resour Res 16(5):918–930CrossRef
go back to reference Harlan RL (1973) Analysis of coupled heat-fluid transport in partially frozen soil. Water Resour Res 9(5):1314–1323CrossRef Harlan RL (1973) Analysis of coupled heat-fluid transport in partially frozen soil. Water Resour Res 9(5):1314–1323CrossRef
go back to reference Hansson K, Šimůnek J, Mizoguchi M, Lundin LC, van Genuchten MT (2004) Water flow and heat transport in frozen soil: numerical solution and freeze-thaw applications. Vadose Zone J 3:693–704 Hansson K, Šimůnek J, Mizoguchi M, Lundin LC, van Genuchten MT (2004) Water flow and heat transport in frozen soil: numerical solution and freeze-thaw applications. Vadose Zone J 3:693–704
go back to reference Hu K (2011) Development of separated ice model coupled heat and mass transfer in freezing soils. PhD. Thesis (In Chinese). China University of Mining and Technology, Xuzhou Hu K (2011) Development of separated ice model coupled heat and mass transfer in freezing soils. PhD. Thesis (In Chinese). China University of Mining and Technology, Xuzhou
go back to reference Hu K, Zhou G, Zhang Q, Li T (2011) Influence of temperature amplitudes and time intervals on frost heave. Indust Construct 41(3):86–90 (In Chinese) Hu K, Zhou G, Zhang Q, Li T (2011) Influence of temperature amplitudes and time intervals on frost heave. Indust Construct 41(3):86–90 (In Chinese)
go back to reference Hu X, Deng S (2016) Ground freezing application of intake installing construction of an underwater tunnel. Procedia Eng 165:633–640CrossRef Hu X, Deng S (2016) Ground freezing application of intake installing construction of an underwater tunnel. Procedia Eng 165:633–640CrossRef
go back to reference Hu X, Deng S, Ren H (2017) In situ test study on freezing scheme of freeze-sealing pipe roof applied to the Gongbei tunnel in the Hong Kong-Zhuhai-Macau bridge. Appl Sci 7(1):27CrossRef Hu X, Deng S, Ren H (2017) In situ test study on freezing scheme of freeze-sealing pipe roof applied to the Gongbei tunnel in the Hong Kong-Zhuhai-Macau bridge. Appl Sci 7(1):27CrossRef
go back to reference Hu X, Deng S, Wang Y (2018a) Test investigation on mechanical behavior of steel pipe-frozen soil composite structure based on freeze-sealing pipe roof applied to Gongbei tunnel. Tunn Undergr Sp Tech 79:346–355CrossRef Hu X, Deng S, Wang Y (2018a) Test investigation on mechanical behavior of steel pipe-frozen soil composite structure based on freeze-sealing pipe roof applied to Gongbei tunnel. Tunn Undergr Sp Tech 79:346–355CrossRef
go back to reference Hu X, Fang T, Chen J, Ren H, Guo W (2018b) A large-scale physical model test on frozen status in freeze-sealing pipe roof method for tunnel construction. Tunn Undergr Sp Tech 72:55–63CrossRef Hu X, Fang T, Chen J, Ren H, Guo W (2018b) A large-scale physical model test on frozen status in freeze-sealing pipe roof method for tunnel construction. Tunn Undergr Sp Tech 72:55–63CrossRef
go back to reference Ji Y, Zhou G, Zhou Y, Hall MR, Zhao X, Mo P (2018) A separate-ice based solution for frost heaving-induced pressure during coupled thermal-hydro-mechanical processes in freezing soils. Cold Reg Sci Technol 147:22–33CrossRef Ji Y, Zhou G, Zhou Y, Hall MR, Zhao X, Mo P (2018) A separate-ice based solution for frost heaving-induced pressure during coupled thermal-hydro-mechanical processes in freezing soils. Cold Reg Sci Technol 147:22–33CrossRef
go back to reference Ji Y, Zhou G, Hall MR (2019) Frost heave and frost heaving-induced pressure under various restraints and thermal gradients during the coupled thermal–hydro processes in freezing soil. B Eng Geol Environ 78:3671–3683CrossRef Ji Y, Zhou G, Hall MR (2019) Frost heave and frost heaving-induced pressure under various restraints and thermal gradients during the coupled thermal–hydro processes in freezing soil. B Eng Geol Environ 78:3671–3683CrossRef
go back to reference Koopmans RWR, Miller RD (1966) Soil freezing and soil water characteristic curves. Soil Sci Soc Am J 30(6):680–685CrossRef Koopmans RWR, Miller RD (1966) Soil freezing and soil water characteristic curves. Soil Sci Soc Am J 30(6):680–685CrossRef
go back to reference Konrad JM, Morgenstern NR (1980) A mechanistic theory of ice lens formation in fine-grained soils. Can Geotech J 17(4):473–486CrossRef Konrad JM, Morgenstern NR (1980) A mechanistic theory of ice lens formation in fine-grained soils. Can Geotech J 17(4):473–486CrossRef
go back to reference Lackner R, Amon A, Lagger H (2005) Artificial ground freezing of fully saturated soil: thermal problem. J Eng Mech 131:211–220 Lackner R, Amon A, Lagger H (2005) Artificial ground freezing of fully saturated soil: thermal problem. J Eng Mech 131:211–220
go back to reference Li Z, Liu S, Feng Y, Liu K, Zhang C (2012) Numerical study on the effect of frost heave prevention with different canal lining structures in seasonally frozen ground regions. Cold Reg Sci Technol 85:242–249CrossRef Li Z, Liu S, Feng Y, Liu K, Zhang C (2012) Numerical study on the effect of frost heave prevention with different canal lining structures in seasonally frozen ground regions. Cold Reg Sci Technol 85:242–249CrossRef
go back to reference Lai Y, Pei W, Zhang M, Zhou J (2014) Study on theory model of hydro-thermal–mechanical interaction process in saturated freezing silty soil. Int J Heat Mass Transf 78:805–819CrossRef Lai Y, Pei W, Zhang M, Zhou J (2014) Study on theory model of hydro-thermal–mechanical interaction process in saturated freezing silty soil. Int J Heat Mass Transf 78:805–819CrossRef
go back to reference Lai Y, Wu D, Zhang M (2017) Crystallization deformation of a saline soil during freezing and thawing processes. Appl Therm Eng 120:463–473CrossRef Lai Y, Wu D, Zhang M (2017) Crystallization deformation of a saline soil during freezing and thawing processes. Appl Therm Eng 120:463–473CrossRef
go back to reference Li S, Zhang M, Pei W, Lai Y (2018) Experimental and numerical simulations on heat-water-mechanics interaction mechanism in a freezing soil. Appl Therm Eng 132:209–220CrossRef Li S, Zhang M, Pei W, Lai Y (2018) Experimental and numerical simulations on heat-water-mechanics interaction mechanism in a freezing soil. Appl Therm Eng 132:209–220CrossRef
go back to reference Lyu C, Sun Q, Zhang W (2019) Effects of NaCl concentration on thermal conductivity of clay with cooling. B Eng Geol Environ 79:1449–1459CrossRef Lyu C, Sun Q, Zhang W (2019) Effects of NaCl concentration on thermal conductivity of clay with cooling. B Eng Geol Environ 79:1449–1459CrossRef
go back to reference Miller RD (1972) Freezing and heaving of saturated and unsaturated soils. Highw Res Rec 393:1–11 Miller RD (1972) Freezing and heaving of saturated and unsaturated soils. Highw Res Rec 393:1–11
go back to reference Mageau DW, Morgenstern NR (1980) Observations on moisture migration in frozen soils. Can Geotech J 17(17):54–60CrossRef Mageau DW, Morgenstern NR (1980) Observations on moisture migration in frozen soils. Can Geotech J 17(17):54–60CrossRef
go back to reference Nixon JF (1991) Discrete ice lens theory for frost heave in soil. Can Geotech J 28(6):843–859CrossRef Nixon JF (1991) Discrete ice lens theory for frost heave in soil. Can Geotech J 28(6):843–859CrossRef
go back to reference O’Neil K, Miller RD (1985) Exploration of a rigid ice model of frost heave. Water Resour Res 21(3):281–296CrossRef O’Neil K, Miller RD (1985) Exploration of a rigid ice model of frost heave. Water Resour Res 21(3):281–296CrossRef
go back to reference Rempel AW, Wettlaufer JS, Worster MG (2004) Premelting dynamics in a continuum model of frost heave. J Fluid Mech 498:227–244CrossRef Rempel AW, Wettlaufer JS, Worster MG (2004) Premelting dynamics in a continuum model of frost heave. J Fluid Mech 498:227–244CrossRef
go back to reference Rempel AW (2007) Formation of ice lenses and frost heave. J Geophys Res 112:F02S21 Rempel AW (2007) Formation of ice lenses and frost heave. J Geophys Res 112:F02S21
go back to reference Spaans EJA, Baker JM (1996) The soil freezing characteristic: its measurement and similarity to the soil moisture characteristic. Soil Sci Soc Am J 60:13–19CrossRef Spaans EJA, Baker JM (1996) The soil freezing characteristic: its measurement and similarity to the soil moisture characteristic. Soil Sci Soc Am J 60:13–19CrossRef
go back to reference Shao L, Zheng G, Guo X, Liu G (2014) Principle of effective stress for unsaturated soils. Proceeding of the 6th international conference on unsaturated soils, Sydney, Australia, pp 239–245 Shao L, Zheng G, Guo X, Liu G (2014) Principle of effective stress for unsaturated soils. Proceeding of the 6th international conference on unsaturated soils, Sydney, Australia, pp 239–245
go back to reference Sheng D, Zhang S, Niu F, Cheng G (2014) A potential new frost heave mechanism in high-speed railway embankments. Géotechnique 64(2):144–154CrossRef Sheng D, Zhang S, Niu F, Cheng G (2014) A potential new frost heave mechanism in high-speed railway embankments. Géotechnique 64(2):144–154CrossRef
go back to reference Shao L, Guo X, Liu S, Zheng G (2017) Effective stress and equilibrium equation for soil mechanics. CRC Press, Boca RatonCrossRef Shao L, Guo X, Liu S, Zheng G (2017) Effective stress and equilibrium equation for soil mechanics. CRC Press, Boca RatonCrossRef
go back to reference Sarsembayeva A, Collins PEF (2017) Evaluation of frost heave and moisture/chemical migration mechanisms in highway subsoil using a laboratory simulation method. Cold Reg Sci Technol 133:26–35CrossRef Sarsembayeva A, Collins PEF (2017) Evaluation of frost heave and moisture/chemical migration mechanisms in highway subsoil using a laboratory simulation method. Cold Reg Sci Technol 133:26–35CrossRef
go back to reference Tarnawski VR, Wagner B (1996) On the prediction of hydraulic conductivity of frozen soils. Can Geotech J 33(1):176–180CrossRef Tarnawski VR, Wagner B (1996) On the prediction of hydraulic conductivity of frozen soils. Can Geotech J 33(1):176–180CrossRef
go back to reference Wang Y, Wang D, Ma W, Wen Z, Chen S, Xu X (2018) Laboratory observation and analysis of frost heave progression in clay from the Qinghai-Tibet plateau. Appl Therm Eng 131:381–389CrossRef Wang Y, Wang D, Ma W, Wen Z, Chen S, Xu X (2018) Laboratory observation and analysis of frost heave progression in clay from the Qinghai-Tibet plateau. Appl Therm Eng 131:381–389CrossRef
go back to reference Xia D (2005) Frost heave (MSc thesis). University of Alberta, Edmonton Xia D (2005) Frost heave (MSc thesis). University of Alberta, Edmonton
go back to reference Zhou G (1999) Analysis of mechanism of restraining soil freezing swelling by using intermission method. J China Univ Min Technol 128(5):413–416 (In Chinese) Zhou G (1999) Analysis of mechanism of restraining soil freezing swelling by using intermission method. J China Univ Min Technol 128(5):413–416 (In Chinese)
go back to reference Zhou J, Zhou G, Ma W, Wang J, Zhou Y, Ji S (2006) Experimental research on controlling frost heave of artificial frozen soil with intermission freezing method. J China Univ Min Technol 35(6):708–712 (In Chinese) Zhou J, Zhou G, Ma W, Wang J, Zhou Y, Ji S (2006) Experimental research on controlling frost heave of artificial frozen soil with intermission freezing method. J China Univ Min Technol 35(6):708–712 (In Chinese)
go back to reference Zhou Y (2009) Study on frost heave model and frost heave control of frozen soil. PhD. Thesis (In Chinese). China University of Mining and Technology, Xuzhou Zhou Y (2009) Study on frost heave model and frost heave control of frozen soil. PhD. Thesis (In Chinese). China University of Mining and Technology, Xuzhou
go back to reference Zhou Y, Zhou G (2012) Intermittent freezing mode to reduce frost heave in freezing soils--experiments and mechanism analysis. Can Geotech J 49(6):686–693CrossRef Zhou Y, Zhou G (2012) Intermittent freezing mode to reduce frost heave in freezing soils--experiments and mechanism analysis. Can Geotech J 49(6):686–693CrossRef
go back to reference Zhang S, Sheng D, Zhao G, Niu F, He Z (2016) Analysis of frost heave mechanisms in a high-speed railway embankment. Can Geotech J 53(3):520–529CrossRef Zhang S, Sheng D, Zhao G, Niu F, He Z (2016) Analysis of frost heave mechanisms in a high-speed railway embankment. Can Geotech J 53(3):520–529CrossRef
go back to reference Zhang X, Zhang M, Lu J, Pei W, Yan Z (2017) Effect of hydro-thermal behavior on the frost heave of a saturated silty clay under different applied pressures. Appl Therm Eng 117:462–467CrossRef Zhang X, Zhang M, Lu J, Pei W, Yan Z (2017) Effect of hydro-thermal behavior on the frost heave of a saturated silty clay under different applied pressures. Appl Therm Eng 117:462–467CrossRef
go back to reference Zhou G, Zhou Y, Hu K, Wang Y, Shang X (2018) Separate-ice frost heave model for one-dimensional soil freezing process. Acta Geotech 13(1):207–217CrossRef Zhou G, Zhou Y, Hu K, Wang Y, Shang X (2018) Separate-ice frost heave model for one-dimensional soil freezing process. Acta Geotech 13(1):207–217CrossRef
go back to reference Zhao R, Zhang S, Gao W, He J, Wang J, Jin D, Nan B (2019) Factors effecting the freeze thaw process in soils and reduction in damage due to frosting with reinforcement: a review. B Eng Geol Environ 78:5001–5010CrossRef Zhao R, Zhang S, Gao W, He J, Wang J, Jin D, Nan B (2019) Factors effecting the freeze thaw process in soils and reduction in damage due to frosting with reinforcement: a review. B Eng Geol Environ 78:5001–5010CrossRef
go back to reference Zhang B, Wang H, Ye Y, Tao J, Zhang L, Shi L (2019) Potential hazards to a tunnel caused by adjacent reservoir impoundment. B Eng Geol Environ 78:397–415CrossRef Zhang B, Wang H, Ye Y, Tao J, Zhang L, Shi L (2019) Potential hazards to a tunnel caused by adjacent reservoir impoundment. B Eng Geol Environ 78:397–415CrossRef
go back to reference Zhao R, Zhang S, He J, Gao W, Jin D, Xie L (2020) Experimental study on freezing and thawing deformation of geogrid-reinforced silty clay structure. B Eng Geol Environ 79:2883–2892CrossRef Zhao R, Zhang S, He J, Gao W, Jin D, Xie L (2020) Experimental study on freezing and thawing deformation of geogrid-reinforced silty clay structure. B Eng Geol Environ 79:2883–2892CrossRef
Metadata
Title
Thermal-hydraulic-mechanical coupling behavior and frost heave mitigation in freezing soil
Authors
Yukun Ji
Guoqing Zhou
Veerle Vandeginste
Yang Zhou
Publication date
03-01-2021
Publisher
Springer Berlin Heidelberg
Published in
Bulletin of Engineering Geology and the Environment / Issue 3/2021
Print ISSN: 1435-9529
Electronic ISSN: 1435-9537
DOI
https://doi.org/10.1007/s10064-020-02092-3

Other articles of this Issue 3/2021

Bulletin of Engineering Geology and the Environment 3/2021 Go to the issue