Coupled thermo-hydro-mechanical modeling of frost heave and water migration during artificial freezing of soils for mineshaft sinking

被引:1
作者
MZhelnin [1 ]
AKostina [1 ]
AProkhorov [1 ]
OPlekhov [1 ]
MSemin [2 ]
LLevin [2 ]
机构
[1] Institute of Continuous Media Mechanics of the Ural Branch of the Russian Academy of Sciences
[2] Mining Institute of the Ural Branch of the Russian Academy of Sciences
关键词
D O I
暂无
中图分类号
TU472.9 [冻结法、爆炸法加固];
学科分类号
081401 ;
摘要
Artificial freezing of water-bearing soil layers composing a sedimentary deposit can induce frost heave and water migration that affect the natural stress-strain state of the soil layers and freezing process. In the present paper, a thermo-hydro-mechanical(THM) model for freezing of water-saturated soil is proposed to study the effects of frost heave and water migration in frozen soils on the formation of a frozen wall and subsequent excavation activity for sinking a vertical shaft. The governing equations of the model are formulated relative to porosity, temperature, and displacement which are considered as primary variables. The relationship between temperature, pore water, and ice pressure in frozen soil is established by the Clausius-Clapeyron equation, whereas the interaction between the stress-strain behavior and changes in porosity and pore pressure is described with the poromechanics theory.Moreover, constitutive relations for additional mechanical deformation are incorporated to describe volumetric expansion of soil during freezing as well as creep strain of soil in the frozen state. The ability of the proposed model to capture the frost heave of frozen soil is demonstrated by a comparison between numerical results and experimental data given by a one-sided freezing test. Also to validate the model in other freezing conditions, a radial freezing experiment is performed. After the validation procedure, the model is applied to numerical simulation of artificial freezing of silt and sand layers for shaft sinking at Petrikov potash mine in Belarus. Comparison of calculated temperature with thermal monitoring data during active freezing stage is presented. Numerical analysis of deformation of unsupported sidewall of a shaft inside the frozen wall is conducted to account for the change in natural stress-strain state of soil layers induced by artificial freezing.
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页码:537 / 559
页数:23
相关论文
共 55 条
[1]   Numerical simulation of artificial ground freezing in a fluid-saturated rock mass with account for filtration and mechanical processes [J].
Ivan APanteleev ;
Anastasiia AKostina ;
Oleg APlekhov ;
Lev YuLevin .
Sciences in Cold and Arid Regions, 2017, 9 (04) :363-377
[2]  
Radon bearing water protection in underground uranium mining——A case study[J]. Yun Xiaoyou,Tang Baoyao,Greg Murdock,Brian McGill,Brian Mattie.International Journal of Mining Science and Technology. 2017(04)
[3]   The coupled moisture-heat process of a water-conveyance tunnel constructed by artificial ground freezing method [J].
Li, Ming ;
Ma, Qinguo ;
Luo, Xiaoxiao ;
Jiang, Haiqiang ;
Li, Yongdong .
COLD REGIONS SCIENCE AND TECHNOLOGY, 2021, 182
[4]  
Thermal monitoring of frozen wall thawing after artificial ground freezing: Case study of Petrikov Potash Mine[J] . Levin L.,Golovatyi I.,Zaitsev A.,Pugin A.,Semin M..Tunnelling and Underground Space Technology incorporating Trenchless Technology Research . 2021
[5]  
Practical prediction method on frost heave of soft clay in artificial ground freezing with field experiment[J] . Zhou Jie,Zhao Wenqiang,Tang Yiqun.Tunnelling and Underground Space Technology incorporating Trenchless Technology Research . 2021
[6]  
Thermal Behavior in Cross-Passage Construction during Artificial Ground Freezing: Case of Harbin Metro Line[J] . Zhiming Li,Jian Chen,Mitsutaka Sugimoto,Chaojun Mao.Journal of Cold Regions Engineering . 2020 (3)
[7]   Applicability of Vyalov's equations to ice wall strength estimation [J].
Kostina, A. ;
Zhelnin, M. ;
Plekhov, O. ;
Panteleev, I ;
Levin, L. ;
Semin, M. .
FRATTURA ED INTEGRITA STRUTTURALE, 2020, 14 (53) :394-405
[8]  
Thermo-poromechanics-based viscoplastic damage constitutive model for saturated frozen soil[J] . Enlong Liu,Yuanming Lai.International Journal of Plasticity . 2020 (prep)
[9]  
Thermo-hydro-mechanical modeling of artificial ground freezing taking into account the salinity of the saturating fluid[J] . H. Tounsi,A. Rouabhi,E. Jahangir.Computers and Geotechnics . 2020 (C)
[10]  
Artificial ground freezing: A review of thermal and hydraulic aspects[J] . Mahmoud A. Alzoubi,Minghan Xu,Ferri P. Hassani,Sébastien Poncet,Agus P. Sasmito.Tunnelling and Underground Space Technology incorporating Trenchless Technology Research . 2020