首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Incorporating water table dynamics in climate modeling: 1. Water table observations and equilibrium water table simulations
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Incorporating water table dynamics in climate modeling: 1. Water table observations and equilibrium water table simulations

机译:将地下水位动力学纳入气候模拟中:1.地下水位观测和平衡地下水位模拟

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Soil moisture is a key participant in land-atmosphere interactions and an important determinant of terrestrial climate. In regions where the water table is shallow, soil moisture is coupled to the water table. This paper is the first of a two-part study to quantify this coupling and explore its implications in the context of climate modeling. We examine the observed water table depth in the lower 48 states of the United States in search of salient spatial and temporal features that are relevant to climate dynamics. As a means to interpolate and synthesize the scattered observations, we use a simple two-dimensional groundwater flow model to construct an equilibrium water table as a result of long-term climatic and geologic forcing. Model simulations suggest that the water table depth exhibits spatial organization at watershed, regional, and continental scales, which may have implications for the spatial organization of soil moisture at similar scales. The observations suggest that water table depth varies at diurnal, event, seasonal, and interannual scales, which may have implications for soil moisture memory at these scales.
机译:土壤水分是土地-大气相互作用的关键参与者,也是陆地气候的重要决定因素。在地下水位较浅的地区,土壤水分与地下水位耦合。本文是由两部分组成的研究的第一部分,该研究量化了这种耦合并探讨了其在气候模拟中的意义。我们在美国下48个州中检查了观测到的地下水位深度,以寻找与气候动态有关的显着空间和时间特征。作为对离散观测值进行插值和综合的一种方法,由于长期的气候和地质强迫,我们使用了简单的二维地下水流模型来构造平衡水位。模型模拟表明,地下水位深度在分水岭,区域和大陆尺度上表现出空间组织,这可能对相似尺度下土壤水分的空间组织有影响。观测结果表明,地下水位深度在日,事件,季节和年际尺度上变化,这可能对这些尺度下的土壤水分记忆有影响。

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