气候变化对土壤垂直水分交换的影响

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引用次数: 0

摘要

气候变化对地表和地下径流的影响,离不开对土壤中水分的入渗、蒸发、向霜锋迁移等过程的研究。这些过程是土壤水分交换的组成部分,几乎完全决定了径流形成及其气候相互整合的机制。揭示了温度、降水、风速、水汽压等环境因子对土壤垂直水分交换的主要影响环节。以伏尔加盆地为例,考虑了过去几十年土壤水分流动的变化。方法。为了揭示水分交换模式,采用了一个物理合理的土壤和积雪垂直热湿传递数学模型。通过数值试验评估了1952-2019年土壤垂直水分流动长期变化的所有主要天气因子的影响。结果。计算表明,在20世纪70年代,土壤水分流动发生了显著变化。下游流量优先增加,上游流量优先减少,在一定天气条件下导致地下水水位上升。近几十年来,河流流域土壤水分下降增长。因此,伏尔加河和地下水位已经下降。
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The Effect of Climatic Changes on Vertical Moisture Exchange in Soils
The effect of climatic changes on surface and underground runoff cannot be explained without studying such changes on such processes of moisture transfer in soils as infiltration, evaporation, migration of moisture to the frost front. These processes are components of moisture exchange in soils and almost completely determine the mechanisms of runoff formation and its climatic interconformity. The paper discloses the main links of vertical moisture exchange in soils with environmental factors such as temperature, precipitation, wind speed and water vapor pressure. On the example of the Volga basin, changes in moisture flows in soils over the past decades are considered. Methods. To reveal the patterns of moisture exchange, a physically sound mathematical model of vertical heat-moisture transfer in soils and snow cover was used. Numerical experiments were carried out to assess the impact of all the main weather factors that cause long-term changes in vertical moisture flows in soils for the period 1952-2019. Results. Calculations showed that in the 1970s there were significant changes in soil moisture flows. There was a preferential increase in downstream flows and a decrease in upstream flows, which under certain weather conditions led to an increase in the level of groundwater. In recent decades, the growth of descending soil moisture flows in the river basin. Volga and, accordingly, groundwater levels have slowed down.
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发文量
14
审稿时长
8 weeks
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