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首页> 外文期刊>Environmental earth sciences >A coupled model for liquid water, water vapor and heat transport of saturated-unsaturated soil in cold regions: model formulation and verification
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A coupled model for liquid water, water vapor and heat transport of saturated-unsaturated soil in cold regions: model formulation and verification

机译:寒冷地区饱和-非饱和土壤的液态水,水蒸气和热传递的耦合模型:模型制定和验证

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摘要

In cold and arid regions, vapor movement and water flow are crucial to thermal-moisture dynamics of the active layer and control the soil microbial activity, plant growth and engineering applications. Although it is widely recognized that both liquid and water vapor movement are fundamental factors in the quantification of soil mass and energy balance, their computation is still rarely considered in most models or practical applications. Moreover, previous studies on the movement of moisture migration in unsaturated frozen soil are limited. This study was conducted to: (a) implement a fully coupled numerical model that includes water migration in both the vapor and liquid phases and heat transfer by means of conduction, convection, latent heat of vapor diffusion and phase change effects. (b) Verify the numerical model with detailed field monitoring data. (c) Analyze the role of water flow and vapor diffusion in the heat and mass transport. The result showed that the numerical model was able to fully calculate the coupled soil mass and energy budget. Thermal conduction dominated the heat transport in the deeper layer (below 75 cm) in permafrost regions, while the impact of water movement on heat in summer was significant in shallow ground. Soil water was transported by both liquid water and water vapor and water vapor contributed more than 15 % of the water flux at all depths. Vapor and liquid water transport play an important role in soil mass and energy transfer, especially for the shallow surface. It is necessary to consider the coupled liquid water, water vapor, and heat transport in predictions of soil water and heat dynamics in permafrost regions.
机译:在寒冷和干旱地区,蒸气运动和水流对于活性层的热湿动力学以及控制土壤微生物活性,植物生长和工程应用至关重要。尽管众所周知,液体和水蒸气的运动都是土壤质量和能量平衡量化的基本因素,但在大多数模型或实际应用中仍然很少考虑它们的计算。此外,先前对非饱和冻土中水分迁移运动的研究是有限的。进行这项研究的目的是:(a)建立一个完全耦合的数值模型,该模型包括水在气相和液相中的迁移以及通过传导,对流,蒸汽扩散潜热和相变效应的传热。 (b)用详细的现场监测数据验证数值模型。 (c)分析水流和水蒸气扩散在热质运输中的作用。结果表明,该模型能够充分计算土壤质量与能量收支的耦合关系。在多年冻土区中,热传导主导着更深层(75厘米以下)的热传递,而夏季,水运移对热量的影响在浅层地面上是显着的。土壤水通过液态水和水蒸气输送,在所有深度,水蒸气贡献了超过15%的水通量。蒸气和液体水的输送在土壤质量和能量传递中起着重要作用,尤其是在浅表层。在预测多年冻土地区的土壤水和热动力时,有必要考虑液态水,水蒸气和热传输的耦合。

著录项

  • 来源
    《Environmental earth sciences》 |2016年第8期|701.1-701.19|共19页
  • 作者单位

    Chinese Acad Sci, Cold & Arid Reg Environm Engn Res Inst, State Key Lab Frozen Soil Engn, Lanzhou Gansu 730000, Peoples R China|Univ Chinese Acad Sci, Beijing 100049, Peoples R China;

    Chinese Acad Sci, Cold & Arid Reg Environm Engn Res Inst, State Key Lab Frozen Soil Engn, Lanzhou Gansu 730000, Peoples R China;

    Chinese Acad Sci, Cold & Arid Reg Environm Engn Res Inst, State Key Lab Frozen Soil Engn, Lanzhou Gansu 730000, Peoples R China|Univ Chinese Acad Sci, Beijing 100049, Peoples R China;

    Chinese Acad Sci, Cold & Arid Reg Environm Engn Res Inst, State Key Lab Frozen Soil Engn, Lanzhou Gansu 730000, Peoples R China|Univ Chinese Acad Sci, Beijing 100049, Peoples R China;

    Chinese Acad Sci, Cold & Arid Reg Environm Engn Res Inst, State Key Lab Frozen Soil Engn, Lanzhou Gansu 730000, Peoples R China|Univ Chinese Acad Sci, Beijing 100049, Peoples R China;

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

    Saturated-unsaturated soil; Active layer; Water transport; Heat transfer; Vapor flow; Evaporation;

    机译:饱和-不饱和土壤;活性层;水输送;传热;蒸气流;蒸发;

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