张升

教授 博士生导师 硕士生导师

入职时间:2011-01-12

所在单位:土木工程学院

职务:院长

学历:博士研究生毕业

办公地点:中南大学天心校区

性别:男

联系方式:湖南省长沙市韶山南路68号 中南大学铁道学院 邮箱:shengzhang@csu.edu.cn

学位:博士学位

在职信息:在职

主要任职:1.《Canadian Geotechnical Journal》编委、2.《岩土工程学报》编委、3.中国土木工程学会土力学与岩土工程分会理事

毕业院校:名古屋工业大学(日本)

学科:土木工程

学术荣誉:

2017  当选:  国家优秀青年基金获得者

2024  当选:  国家特支计划领军人才

曾获荣誉:

1.国际计算岩土力学学会最佳论文奖

2.湖南省技术发明一等奖

3.詹天佑铁道科技青年奖

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Canopy effect caused by vapour transfer in covered freezing soils

发布时间:2026-08-10

点击次数:

DOI码:10.1680/jgeot.16.P.016

发表刊物:Géotechnique

关键字:ground freezing; laboratory tests; numerical modelling; water flow

摘要:Canopy effect in this paper refers to the phenomenon whereby moisture accumulates underneath an impervious cover. Field observations reveal that the canopy effect can occur in relatively dry soils where the groundwater table is deep and can lead to full saturation of the soil immediately underneath the impervious cover. However, numerical analysis based on existing theories of heat and mass transfer in unsaturated soils can only reproduce a minor amount of moisture accumulation caused by an impervious cover, particularly when the groundwater table is relatively deep. In an attempt to explain the observed canopy effect in the field, this paper proposes a new mechanism of moisture accumulation in unsaturated freezing soils: vapour transfer in such a soil is accelerated by the process of vapour–ice desublimation. A new approach for modelling moisture and heat movements is proposed in which phase changes during the evaporation, condensation and desublimation of vapour flow are considered. A laboratory device is designed specifically to study vapour transfer in unsaturated freezing soils. The test results reveal that vapour transfer can lead to significant moisture and ice accumulation near the freezing end of a soil specimen. The computed results show that the proposed model can indeed reproduce the unusual moisture accumulation observed in relatively dry soils. The results also demonstrate that soil freezing fed by vapour transfer can result in a water content that is close to full saturation. Because vapour transfer is seldom considered in geotechnical design, the canopy effect deserves greater attention during construction and earth works in cold and arid regions.

合写作者:J. TENG, Z. HE, Y. LIU, S. LIANG, Y. YAO, D. SHENG

第一作者:S. ZHANG

论文类型:期刊论文

卷号:66

期号:11

页面范围:927-940

是否译文:

发表时间:2016-06-14

附件:

  • Canopy effect caused by vapour transfer in covered freezing soils.pdf

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