Impact of Isothermal Layering on the Stability of Saline Soil Subgrade in Cold Regions

Author:

Zhang Yu1ORCID,Chen Xuerui2,Zou Meisi3,Tian Runze1,Hou Yunlong4,Han Bingbing4

Affiliation:

1. School of Traffic and Transportation, Lanzhou Jiaotong University, Lanzhou 730070, China

2. Lanzhou Rail Transit Construction Management Office, Lanzhou 730070, China

3. School of Automotive Engineering, Jiujiang Vocational and Technical College, Jiangxi 332000, China

4. Gansu Institute of Engineering Geology, Lanzhou 730000, China

Abstract

In order to determine the influence of heat on the stability of the saline soil subgrade slope in cold regions. Firstly, four typical representative saline soils were selected as subgrade fillers, and geotextiles were added at the bottom of the subgrade as a study subject. A two-dimensional numerical model for the temperature field of subgrade soil was established based on COMSOL Multiphysics. Secondly, combined with the main strength parameters of subgrade soil at different temperatures, an isothermal stratification-strength parameter function calculation model was proposed. Then, the SLOPE/W module in GeoStudio is used to stratify the established subgrade model according to isotherms and calculate the stability safety factor of saline soil subgrades in cold regions under different months, slopes, and subgrade heights, respectively. Finally, the influence of submergence at the foot of the slope on the stability of the subgrade slope is discussed. The results show: After the cold season coming, with the decreasing of temperature, the stability of HC-1 and HC-2 saline soil subgrade slope increased to different extents when the ground temperature dropped to -10°C. When the local temperature dropped below -10°C, the stability has slight decline; CS-1 and CS-2 saline soil subgrade in the ground temperature dropped to 10°C (HC-1 and HC-2 denote two groups of saline soil with high chloride-salt content (≥15%) and low sulfate salt content (≤0.5%), whereas CS-1 and CS-2 denote two groups of saline soil with low chloride-salt (≤5%)), the slope stability was significantly improved, and the stability of CS-1 increases slightly with further decrease in temperature.

Funder

Longyuan Youth Innovation and Entrepreneurship Talent (Team) Project of Gansu Province

Publisher

Hindawi Limited

Subject

General Earth and Planetary Sciences

Reference27 articles.

1. Road diseases and prevention in saline soil areas;X. S. Wang;Journal of Tongji University (Natural Science Edition),2003

2. SwenneD. A.The Eutectic Crystallization of nacl·2h2o and ice, [Ph.D. thesis]1983Technische Hogeschool Eindhoven

3. A strength criterion for frozen sodium sulfate saline soil

4. Thermodynamic properties of the NaCl+H2O system. II. Thermodynamic properties of NaCl(aq), NaCl·2H2(cr), and phase equilibria;D. G. Archer;Journal of Physical & Chemical Reference Data,2009

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