Numerical analysis for permafrost temperature field in the short term of permafrost subgrade filling

Yunjia Wang, Qian-li Zhang
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Abstract

Purpose It is of great significance to study the influence of subgrade filling on permafrost temperature field in permafrost area for the smooth construction and safe operation of railway.Design/methodology/approach The paper builds up the model for the hydrothermal coupling calculation of permafrost using finite element software COMSOL to study how permafrost temperature field changes in the short term after subgrade filling, on which basis it proposes the method of calculation for the concave distortion of freezing front in the subgrade-covered area.Findings The results show that the freezing front below the subgrade center sinks due to the thermal effect of subgrade filling, which will trigger hydrothermal erosion in case of sufficient moisture inflows, leading to the thawing settlement or the cracking of the subgrade, etc. The heat output of soil will be hindered the most in case of July filling, in which case the sinking and the distortion of the freezing front is found to be the most severe, which the recovery of the permafrost temperature field, the slowest, constituting the most unfavorable working condition. The concave distortion of the freezing front in the subgrade area increases with the increase in temperature difference between the filler and ground surface, the subgrade height, the subgrade width and the volumetric thermal capacity of filler, while decreases with the increase of the thermal conductivity of filler. Therefore, the filler chose for engineering project shall be of small volumetric thermal capacity, low initial temperature and high thermal conductivity whenever possible.Originality/value The concave distortion of the freezing front under different working conditions at different times after filling can be calculated using the method proposed.
冻土路基填筑短期内冻土温度场数值分析
目的研究路基填筑对多年冻土区冻土温度场的影响,对铁路的顺利施工和安全运营具有重要意义。设计/方法/途径利用COMSOL有限元软件建立冻土热液耦合计算模型,研究路基填筑后冻土温度场短期内的变化规律,在此基础上提出路基覆盖区冻结锋凹变形的计算方法。结果表明:路基中心以下冻结锋受路基填筑热效应的影响而下沉,当水分流入充足时,冻结锋会引发热液侵蚀,导致路基融化沉降或开裂等。7月填土对土壤热输出的阻碍最大,冻结锋下沉和变形最严重,冻土温度场恢复最慢,是最不利的工况。路基区域冻结锋凹变形随填料与地面温差、路基高度、路基宽度和填料体积热容量的增大而增大,随填料导热系数的增大而减小。因此,工程选用的填料应尽可能体积热容量小、初始温度低、导热系数高。利用本文提出的方法,可以计算出充填后不同工况、不同时间冻结锋的凹变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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