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Diurnal soil water dynamics in the shallow vadose zone (field site of China University of Geosciences, China)

机译:浅层渗流带土壤水分的日变化(中国地质大学现场)

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摘要

Because of the relatively low soil moisture in arid or semi-arid regions, water vapour movement often predominates in the vadose zone and affects the partitioning of energy among various land surface fluxes. In an outdoor sand bunker experiment, the soil water content at 10 and 30 cm depth were measured at hourly intervals for 2.5 days during October 2004. It was found that the soil moisture reached the daily maximum value (5.9-6.1% at 10 cm and 11.9-13.1% at 30 cm) and minimum value (4.4-4.5% at 10 cm and 10.4-10.8% at 30 cm) at midday (0-1 p.m. for 10 cm and 2-3 p.m. for 30 cm) and before dawn (2-3 a.m. for 10 cm and 4-5 a.m. for 30 cm), respectively. The modified HYDRUS-1D code, which refers to the coupled water, water vapour and heat transport in soil, was used to simulate the moisture and water vapour flow in the soil. The numerical analyses provided insight into the diurnal movement of liquid water and water vapour driven by the gradients of pressure heads and temperatures in the subsurface zone. The simulated temperature and water content were in good agreement with the measuredrnvalues. The spatial-temporal distribution of liquid water flux, water vapour flux and soil temperature showed a detailed diurnal pattern of soil water dynamics in relatively coarse sand.
机译:由于干旱或半干旱地区的土壤水分相对较低,水蒸气的运动通常在渗流带占主导地位,并影响各种陆面通量之间的能量分配。在一个室外沙坑实验中,在2004年10月以每小时间隔2.5天的时间测量了10厘米和30厘米深度的土壤含水量。发现土壤水分达到了每日最大值(10厘米处为5.9-6.1%, 30 cm时为11.9-13.1%),中午(10厘米为0-1 pm,30 cm则为2-3 pm)和最小值(10厘米处为4.4-4.5%,30厘米处为10.4-10.8%) (上午2-3时10厘米,上午4-5时30厘米)。修改后的HYDRUS-1D代码涉及土壤中水,水蒸气和热量的耦合传递,用于模拟土壤中的水分和水蒸气流动。数值分析提供了对由地下水头的压力头和温度梯度驱动的液态水和水蒸气的昼夜运动的认识。模拟的温度和水含量与实测值非常吻合。液态水通量,水蒸气通量和土壤温度的时空分布显示了相对粗沙中土壤水分动力学的详细的昼夜模式。

著录项

  • 来源
    《Environmental Geology》 |2009年第1期|11-23|共13页
  • 作者单位

    School of Water Resources and Environment, China University of Geosciences, 100083 Beijing, China International Institute for Geo-information Science and Earth Observation, 7500 AA Enschede, The Netherlands;

    School of Water Resources and Environment, China University of Geosciences, 100083 Beijing, China;

    International Institute for Geo-information Science and Earth Observation, 7500 AA Enschede, The Netherlands;

    Institute of Symbiotic Science and Technology, Tokyo University of Agriculture & Technology, Fuchu, Tokyo 183-8509, Japan;

    School of Water Resources and Environment, China University of Geosciences, 100083 Beijing, China;

    School of Water Resources and Environment, China University of Geosciences, 100083 Beijing, China;

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

    vadose zone; water vapour; coupled heat and water movement model; temperature gradient;

    机译:渗流区;水蒸气;水热耦合模型温度梯度;

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