首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Heat transfer and water migration in loess slopes during freeze-thaw cycling in Northern Shaanxi, China
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Heat transfer and water migration in loess slopes during freeze-thaw cycling in Northern Shaanxi, China

机译:陕北冻融循环过程中黄土边坡的传热和水分迁移

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摘要

Migration of heat and water during freeze-thaw cycling has always been one of the significant topics in frozen soil mechanics. This paper first carries out field tests in the heartland of Loess Plateau, i.e., Northern Shaanxi, China, on the water migration and heat transfer in loess slopes during freeze and thaw. Results indicate that the water content within a certain depth shows sudden increase during freezing, while it tends to be more uniform after thawing, strongly depending on the variation of temperature profile over depth. When modeling heat and water migration in seasonal frozen ground, two characteristic curves, i.e., soil freezing curve and water retention curve, were incorporated in an improved Harlan model. The modified Richards' equation and a nonlinear heat conduction equation considering ice-water phase change were both included. As for the effect of freeze-thaw cycling, laboratory tests were carried out to investigate how the coefficients of heat and water conductivity vary with both the degree of saturation and freeze-thaw cycles, based on which empirical models for loess were derived. A large-scale model test on the loess slope with the gradient of 1:0.75 was carried out to verify the rationality of the proposed model. Comparison of calculated curves and test data shows that the proposed method well describes the migration of both heat and water during cyclic freeze and thaw.
机译:冻融循环过程中的热量和水的迁移一直是冻结土壤力学中的重要课题之一。本文首先在黄土高原的心脏地带,即中国陕西北部,进行了冻融过程中黄土边坡的水分迁移和传热的现场测试。结果表明,在一定深度内的水分含量在冻结过程中突然增加,而在融化后倾向于趋于均匀,这在很大程度上取决于温度曲线随深度的变化。在模拟季节性冻土中的热和水运移时,在改进的Harlan模型中结合了两条特征曲线,即土壤冻结曲线和保水曲线。修改后的理查兹方程和考虑冰水相变的非线性导热方程都包括在内。关于冻融循环的影响,进行了实验室测试,以研究导热系数和水传导系数如何随饱和度和冻融循环而变化,并以此为基础得出了黄土的经验模型。在坡度为1:0.75的黄土边坡上进行了大规模模型试验,验证了所提模型的合理性。计算曲线和试验数据的比较表明,该方法很好地描述了循环冻融过程中热量和水的迁移。

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  • 作者单位

    School of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, Shaanxi, China;

    Institute of Geotechnical Engineering, Xi'an University of Technology, 5 Jinhua South Road, Xi'an 710048, Shaanxi, China;

    School of Civil Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, Shaanxi, China;

    State Key Laboratory of Road Engineering Safety and Health in Cold and High-altitude Region, CCCC First Highway Consultants Co., Ltd., Xi'an 710075, Shaanxi, China;

    Northwest Electric Power Design Institute Co., Ltd. Of China Power Engineering Consulting Group, Xi'an 710075, Shaanxi, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Freeze and thaw; Loess slope; Heat and water migration; Model test;

    机译:冻融;黄土坡度;热量和水的迁移;模型测试;

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