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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effect of water table dynamics on land surface hydrologic memory
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Effect of water table dynamics on land surface hydrologic memory

机译:地下水位动态对地表的影响水文的记忆

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The representation of groundwater dynamics in land surface models has received considerable attention in recent years. Most studies have found that soil moisture increases after adding a groundwater component because of the additional supply of water to the root zone. However, the effect of groundwater on land surface hydrologic memory (persistence) has not been explored thoroughly. In this study we investigate the effect of water table dynamics on National Center for Atmospheric Research Community Land Model hydrologic simulations in terms of land surface hydrologic memory. Unlike soil water or evapotranspiration, results show that land surface hydrologic memory does not always increase after adding a groundwater component. In regions where the water table level is intermediate, land surface hydrologic memory can even decrease, which occurs when soil moisture and capillary rise from groundwater are not in phase with each other. Further, we explore the hypothesis that in addition to atmospheric forcing, groundwater variations may also play an important role in affecting land surface hydrologic memory. Analyses show that feedbacks of groundwater on land surface hydrologic memory can be positive, negative, or neutral, depending on water table dynamics. In regions where the water table is shallow, the damping process of soil moisture variations by groundwater is not significant, and soil moisture variations are mostly controlled by random noise from atmospheric forcing. In contrast, in regions where the water table is very deep, capillary fluxes from groundwater are small, having limited potential to affect soil moisture variations. Therefore, a positive feedback of groundwater to land surface hydrologic memory is observed in a transition zone between deep and shallow water tables, where capillary fluxes act as a buffer by reducing high-frequency soil moisture variations resulting in longer land surface hydrologic memory.
机译:地下水动力学的表征土地已收到相当大的表面模型近年来关注。添加后发现,土壤水分增加地下水由于额外的组件供应的水到根区。地下水对地表水文的影响内存(持久性)没有被探索彻底。在国家中心水位动态的影响大气研究社区土地模型水文模拟的地表水文的记忆。土壤水分蒸发蒸腾损失总量,结果表明,土地表面水文记忆并不总是增加地下水之后添加一个组件。地区地下水位水平中间,地表水文记忆甚至减少,土壤水分时发生并从地下水毛细上升并不在彼此相。假设除了大气强迫、地下水变化也可能发挥重要的作用影响地表水文的记忆。地下水对地表水文记忆可以是积极的,消极的或中性的不同吗在水位动态。表浅,水的衰减过程土壤水分变化,地下水不是显著,土壤水分的变化主要是由随机噪声的控制大气强迫。地下水位很深,毛细管来自地下水的通量小,有限的可能影响土壤水分的变化。因此,地下水的积极反馈地表水文记忆是观察深水和浅水之间的过渡区表,毛细管通量作为缓冲减少高频土壤水分的变化导致地表水文内存。

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