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Diurnal pattern of liquid water and water vapor movement affected by rainfall in a desert soil with a high water table

机译:地下水位较高的沙漠土壤中降雨对液态水和水汽运动的日变化规律

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摘要

Because arid and semi-arid regions have relatively low soil moisture, water vapor movement often occurs predominantly in the unsaturated zone, affecting the partitioning of energy among various land surface fluxes. To understand the hydrological processes of the unsaturated zone in desert areas, it is important to characterize the diurnal and spatial variations in soil water and vapor movement, which control recharge and discharge via the unsaturated zone. However, few studies have examined the pattern of soil water and vapor movement affected by rainfall in desert areas. To understand this process, field observations of desert soil physical parameters and micrometeorological variables were taken. These data were used to verify and calibrate the performance of an unsaturated- saturated zone soil water balance model, Hydrus1D. Next, the diurnal pattern of the soil water and vapor was simulated under different climatic conditions, i. e., before, during and after rainfall. Two stages of thermal liquid and vapor movement were identified before rainfall. The thermal liquid flux fluctuates quickly and drastically, while the thermal vapor changes more moderately during and after rainfall. The changes in isothermal liquid and vapor flux differ from those of thermal liquid and vapor flux because of the change in the pressure head gradient under various wetness conditions. These findings offer insight into how water vapor affects soil water movement in the semiarid desert. They also improve our understanding of the liquid water and water vapor movement processes following rainfall.
机译:由于干旱和半干旱地区的土壤水分相对较低,因此水蒸气运动通常主要发生在非饱和带,从而影响了各种陆面通量之间的能量分配。为了了解沙漠地区非饱和带的水文过程,表征土壤水汽运动的昼夜和空间变化非常重要,这可以控制通过非饱和带的补给和排放。但是,很少有研究研究沙漠地区降雨对土壤水汽运动的影响。为了理解这一过程,对沙漠土壤的物理参数和微气象变量进行了现场观察。这些数据用于验证和校准非饱和-饱和带土壤水平衡模型Hydrus1D的性能。接下来,模拟了在不同气候条件下土壤水分和水汽的昼夜模式。例如,在降雨之前,之中和之后。在降雨之前确定了液体和蒸气的热运动两个阶段。液体的热通量快速而剧烈地波动,而在降雨期间和之后,热蒸汽的变化更为缓和。等温液体和蒸气通量的变化与液体和蒸气通量的变化不同,这是因为在各种湿度条件下压头梯度的变化。这些发现提供了关于水蒸气如何影响半干旱沙漠中土壤水分运动的见解。它们还增进了我们对降雨后液态水和水蒸气运动过程的理解。

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  • 来源
    《Environmental earth sciences》 |2016年第1期|73.1-73.16|共16页
  • 作者单位

    Xian Inst Geol & Mineral Resources, 438 Youyidong Rd, Xian 710054, Peoples R China|Chang An Univ, Minist Educ, Key Lab Subsurface Hydrol & Ecol Effect Arid Reg, 126 Yata Rd, Xian 710054, Peoples R China;

    Univ Coll Dublin, Sch Civil Engn, Dublin 2, Ireland;

    Chang An Univ, Minist Educ, Key Lab Subsurface Hydrol & Ecol Effect Arid Reg, 126 Yata Rd, Xian 710054, Peoples R China;

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

    Vadose zone; Liquid water and water vapor flow; Heat transport; Rainfall; Hydrus-1D;

    机译:渗流带;液态水和水蒸气流量;传热;降雨;Hydrus-1D;

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